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PREMIO
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INNOVACIÓN
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División: CIV
CENTRO para INOCULADOS por VACUNAS
"Prevención / Tratamiento de efectos adversos"
INTRODUCCIÓN
Esta página está dedicada a aquellas personas que, siguiendo la presión de los medios de comunicación oficiales y el sector sanitario desinformado, se inocularon uno o más viales de alguna de las llamadas "vacunas C0VID" y que no tuvieron acceso a la información real o la consiguieron demasiado tarde.
La llamada "pandemia C0VID-19”, tal y como preveímos y avisamos por este medio a principios de 2020, fue un genocidio legal a nivel global (sobretodo llevado a término por el Dr. Fauci) donde, además, las tramas de organizaciones criminales implicadas obtuvieron intereses económicos de una magnitud sin precedentes.
Por ello, en 2020 aconsejamos a todos los pacientes que no se inocularan ya que conocemos de primera mano las intenciones de las grandes corporaciones involucradas, gobiernos y organizaciones supranacionales.
EFECTOS
De momento, ello ha dejado a más de 17 millones de fallecidos, e infinidad de enfermos, muchos de ellos sin solución posible a día de hoy, y otros con efectos provocados a conciencia que quizás podemos mejorar o resolver, aparte de muchos inoculados que, a día de hoy, todavía no han mostrado síntomas, pero que pueden aparecer en un futuro, probablemente.
Decimos esto debido a que tenemos pacientes inoculados que se han visitado por otras razones, inicialmente no vinculadas a esos viales y que, al revisarlos, les hemos descubierto cánceres y otras patologías incipientes, presuntamente, vinculadas a las inoculaciones.
Los infartos fulminantes, miocarditis, arritmias, trombos, turbocánceres, están todavía a la orden del día y en estos momento alrededor de 800 deportistas han caído fulminados mientras entrenaban o competían por no mencionar a las personas que cada día amplían la lista de fallecidos por infarto, sin causa aparente.
Por este motivo, aconsejamos a los inoculados que no esperen a presentar síntomas, que sean proactivos e inicien tratamientos de prevención lo antes posible.
También aconsejamos a los inoculados que ya presentan efectos secundarios que se traten con urgencia antes de que sea demasiado tarde. De este grupo habrá a quienes se les podrá ayudar en mayor o menor medida y a los que no, en función de su diagnóstico.
Nuestro mensaje para todos ellos es que tomen acción, por la vía médica o alternativa que prefieran para que sean atendidos por alguien de su confianza. Si lo desean, en Medicina Moderna podemos ayudarles.
SÍ, ES DIFÍCIL DE CREER.
Si Ud. no cree en ello, investigue. Aquí tiene un solo ejemplo que pueden comprobar fácilmente:
…
El 31 de agosto de 2021 Robert F. Kennedy (Sobrino del ex presidente John Fitzgerald Kennedy) interponía demanda contra la FDA, para anular la autorización de la “vacuna” de Pfizer (Comirnaty). Se denegó.
Tras muchas batallas legales por varias vías, el 6 de enero de 2023, el Juez Mark Pittman (Distrito norte de Texas, EEUU) exigió a Pfizer (NeoNTech) la entrega inmediata de 12000 páginas de la documentación solicitada y el resto en entregas mensuales de 55000 páginas.
El 23 de abril de 2023 la ICAN interpuso demanda contra la FDA (Distrito oeste de Texas, EEUU) descubriéndose que el 29 de julio de 2021 Pfizer ya contaba con una base de datos de 117 millones de expedientes de efectos adversos de la vacuna.
Uno de los documentos liberados por orden judicial fue “Análisis acumulativo de los informes de efectos adversos posautorización”. Este documento lo solicitó la FDA a Pfizer previa aprobación de la vacuna y la FDA lo aprobó. En él se revela que la administración de la vacuna en 42.086 personas había producido 1223 muertes, es decir, 1 de cada 33.
En resultados: 1833 reacciones anafilácticas, 1402 episodios cardiovasculares (arritmia, taquicardia, infartos, fallos cardíacos agudos, shock cardiogénico y miocardiopatías), 3067 casos de anosmia (pérdida del olfato), 932 episodios relacionados con la sangre (prombocipenia, hemorragias, neutropenias y leucopenias), 449 parálisis faciales, 1051 casos relacionados con la inmunidad, 3600 muscoesqueléticos y 8152 de otras categorías. Aparte, abortos pero sin datos de las 270 embarazadas vacunadas.
En total, alrededor de 2800 efectos adversos diferentes.
...
Y esto no acaba aquí:
https://odysee.com/@CienciaySaludNatural.com:3/kennedy-militare:0?r=8kGvFrRV7tzMKHtUuaT9jivuk3Ky6ddW
EFECTOS CONTRASTADOS:
• Tipo ARN encapsulado ("Codifican la proteina spike del SARS-CoV-2"):
- Daños celulares y orgánicos.
- Alteraciones en la formación de la placenta y en el desarrollo dela gestación.
- Microtrombosis en pulmones, corazón, riñón y cerebro.
- Inflamación del órgano testicular.
- Posible infertilidad masculina.
- Bloqueo de funciones vitales como la supresión de proteinas.
- Falta de desarrollo testicular en los niños.
- Enfermedades del tipo de las parálisis (mieditis transversa y ELA)
- Mutaciones en la línea germinal.
- Daños en la fecundidad masculina y femenina.
- Problemas de toxicidad que pueden provocar alteraciones bioquímicas y patológicas a largo plazo e incluso síndrome de ADE (Infección Dependiente de Anticuerpos).
- Ataques autoinmunes.
- Delirios suicidas.
- Muerte.
• Tipo ARN vectorizado ("Con gen vírico producido a partir de la proteina spike"):
- Mutagénesis.
- Inmunodeficiencia inducida.
- Problemas de coagulación.
- Trombosis.
- Problemas oculares (Incluyendo ceguera).
- Trombocitopenia.
• Tipo Virus inactivados (Sobretodo en Iberoamérica):
- Síndrome de ADE (Infección Dependiente de Anticuerpos).
COMPOSICIÓN
A día de hoy no tenemos evidencias del discurso oficial del virus modificado genéticamente (Nadie lo ha podido secuenciar) y todavía se están estudiando los efectos del ARN mensajero (con el objetivo de modificar genéticamente a la población) junto con los de la proteina spike (teóricamente, momentáneas y que, años después, todavía persisten).
De lo que sí tenemos evidencia comprobada es del cóctel químico, muy peligroso, que se ha encontrado en los viales (aparte del grafeno y la nanotecnología asociada asi como su vinculación con las antenas 5G) y sus efectos potenciales:
*ADN de células diploides de abortos humanos
• SULFATO DE AMONIO (Contiene fertilizante):
Problemas de vías respiratorias y piel.
• URANIO:
Problemas de riñón.
• MERCURIO (Thimerosal):
Daños neurológicos.
• ALUMINIO:
Problemas neuropsicológicos.
• FORMALINA:
Cáncer.
• HIDRÓXIDO DE ALUMINIO:
Alergias y daños gastrointestinales.
• HIDRÓXIDO 2 FENIXIERANOL:
Alergias y severos daños neurológicos, es un depresor del sistema nervioso central.
• CÉLULAS DIPOLOIDES HUMANAS DE EMBRIONES ABORTADOS:
Cáncer y autismo.
• POLI SORBATO 80:
Problemas cerebrales, obesidad y problemas cardiovasculares.
• PROTEINAS RESIDUALES:
Alergias.
• LÍNEA CONTÍNUA DE RIÑÓN DE MONO:
Cáncer.
• FOSFATO DE ALUMINIO:
Inflamación cerebral, Alzheimer, fibrosis pulmonar, daño al sistema nervioso central, demencia, pérdida de la memoria, temblores severos
• PROTEINA DE SOJA TRANGENICA:
Alergias
• CLORURO:
Problemas renales
• FOSFATO DE POTASIO:
Daños renales
• SORBITOL:
Daños gastrointestinales, gastritis, colitis, hernia, etc.
• ALBUMINA HUMANA:
Problemas autoinmunes de insulina ( Diabetes )
• SUERO BOVINO:
Alergias
*GELATINA HODROLIZADA:
Alergias
*ANTIBIÓTICOS :
Anafilaxis, problemas gastrointestinales, obesidad, mala absorción o intolerancia alimentaria, pérdida de apetito, estreñimiento, gases, gastritis, dificultad respiratoria, mayor riesgo de sufrir resfriados o gripe, trastornos en la piel, dolores de cabeza o jaquecas, sensibilidad a la luz solar.
• EMBRIÓN DE POLLO:
Alergias y dermatitis
• LEVADURA:
Alergias
• BIFOAFATO DE POTASIO:
Insuficiencia renal (daños permanentes en los riñones y daño fetal durante el embarazo)
• SUCAROSA:
Neuroinflamacion, cáncer de páncreas, hígado graso, gota, hipertensión arterial, etc.
GLUTAMATO MONOSÓDICO :
Tóxicidad neuronal, migrañas, epilepsia, depresión.
SUERO BOVINO:
Desorden degenerativo cerebral
MF59 ( Squalene ) :
Inflamaciones (artritis, etc.)
FUENTES CIENTÍFICAS
*Más información en www.learntherisk.org
• Ammonium Sulphate : https://www.ube.es/EN/sostenibilidad/pdfs/PSS-for-Ammonium-Sulphate.pdf
Uranium : https://www.lenntech.com/periodic/elements/u.htm
Mercury : https://www.who.int/news-room/fact-sheets/detail/mercury-and-health
Aluminum : https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5651828/
Formaldehyde : https://www.cancer.org/cancer/cancer-causes/formaldehyde.html
Aluminum Hydroxide: https://www.everydayhealth.com/drugs/aluminum-hydroxide
2-phenoxyethanol: http://www.safecosmetics.org/get-the-facts/chemicals-of-concern/phenoxyethanol/
Human Diploid cell lines : https://www.ncbi.nlm.nih.gov/pmc/articles/
PMC6743285/, https://academicjournals.org/article/article1411048618_Deisher%20et%20al.pdf
Polysorbate 80: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4527829/
VACUNAS ANTIGRIPALES
Por otro lado, estos son los componentes de las vacunas antigripales hasta antes del año 2020, de acuerdo a todos los laboratorios del mundo que las han analizado:
–Timerosal (Mercurio).
–Etanol (anticongelante).
–Polisorbato 20 y 80.
–Tintura de Aluminio.
–Formaldehído.
–Aluminio.
–Acetona.
–Alcohol.
–Bario.
–Bacteria E. Coli.
–Cultivos Pulmonares de fetos humanos abortados.
–Cultivos de Células Diploides de fetos humanos abortados (WI 38 y MRC-5).
–Proteína de Gallina.
–Albúmina Humana.
–Suero Fetal Vacuno.
–Tejido muscular vacuno.
–Albúmina de Suero Vacuno.
–Proteína de Huevo de Gallina.
–Células de Riñón de Mono.
–Gelatina Porcina.
–Arginina Porcina.
–Suero y Proteína de Ternero.
–Células Embriónicas de Cobayo.
–ADN de Coronavirus de Cerdo.
–Bacteriana Celular y Proteína Viral de Insectos.
–Proteína y ADN Celular de Riñones de Perro.
–Solución de Extractos Vacunos.
–Dextrosa.
–Cloruro de Sodio, de Potasio y de Magnesio.
–Gelatina.
–Caseína.
–Glucosa.
–Fructosa.
–Detergente.
–Proteína de Levadura.
–Sacarosa (Azúcar).
–Sales y Azúcares.
–Fosfato de Sodio.
–Otros elementos extraños varios no identificables.
• * *
Instituto Ellen Tao
SI TODAVÍA LE CUESTA CREERLO, AQUÍ TIENE MÁS DE 300 ESTUDIOS CLÍNICOS:
Considerando que hay evidencia sustancial que revela que las inyecciones basadas en ADN/ARN son ineficaces para prevenir la infección, la transmisión, la enfermedad grave, la hospitalización o la muerte, y que existe preocupación adicional por la rápida disminución de la inmunidad y los mayores riesgos asociados con su uso.
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Effectiveness
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Infection
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Wang Q, Iketani S, Li Z, et al. Alarming antibody evasion properties of rising SARS-CoV-2 BQ and XBB subvariants. Cell. 2023;186(2):279-286.e8. doi:10.1016/j.cell.2022.12.018
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Althaus T, Overton CE, Devaux I, et al. How effective is the BNT162b2 mRNA vaccine against SARS-CoV-2 transmission and infection? A national programme analysis in Monaco, July 2021 to September 2022. BMC Med. 2024;22(1):227. Published 2024 Jun 5. doi:10.1186/s12916-024-03444-6
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Rodrigues CO, Spinardi J, Rosa RG, et al. Real-world effectiveness of original BNT162b2 mRNA COVID-19 against symptomatic Omicron infection among children 5-11 years of age in Brazil: A prospective test-negative design study. Immunol Lett. 2024;269:106903. doi:10.1016/j.imlet.2024.106903
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Kirwan PD, Hall VJ, Foulkes S, et al. Effect of second booster vaccinations and prior infection against SARS-CoV-2 in the UK SIREN healthcare worker cohort. Lancet Reg Health Eur. 2023;36:100809. Published 2023 Dec 14. doi:10.1016/j.lanepe.2023.100809
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Lei J, MacNab Y. Bayesian hierarchical spatiotemporal models for prediction of (under)reporting rates and cases: COVID-19 infection among the older people in the United States during the 2020-2022 pandemic. Spat Spatiotemporal Epidemiol. 2024;49:100658. doi:10.1016/j.sste.2024.100658
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Ramya Sree A, Sethumadhavan K, Pullakanam SPT, Usharani P. Evaluation of CoVid-19 infection among vaccinated and unvaccinated individuals using biochemical markers. Bioinformation. 2024;20(3):223-228. Published 2024 Mar 31. doi:10.6026/973206300200223
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Tang Y, Boribong BP, Swank ZN, et al. COVID-19 mRNA vaccines induce robust levels of IgG but limited amounts of IgA within the oronasopharynx of young children. Preprint. medRxiv. 2024;2024.04.15.24305767. Published 2024 Apr 16. doi:10.1101/2024.04.15.24305767
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Conti MG, Piano Mortari E, Nenna R, et al. SARS-CoV-2-specific mucosal immune response in vaccinated versus infected children. Front Cell Infect Microbiol. 2024;14:1231697. Published 2024 Mar 27. doi:10.3389/fcimb.2024.1231697
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Igyártó BZ, Qin Z. The mRNA-LNP vaccines – the good, the bad and the ugly?. Front Immunol. 2024;15:1336906. Published 2024 Feb 8. doi:10.3389/fimmu.2024.1336906
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Chalupka A, Richter L, Chakeri A, et al. Effectiveness of a fourth SARS-CoV-2 vaccine dose in previously infected individuals from Austria. Eur J Clin Invest. 2024;54(3):e14136. doi:10.1111/eci.14136
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Xing Z, Jeyanathan M. A next-generation inhalable dry powder COVID vaccine. Nature. 2023;624(7992):532-534. doi:10.1038/d41586-023-03557-7
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Kirwan PD, Hall VJ, Foulkes S, et al. Effect of second booster vaccinations and prior infection against SARS-CoV-2 in the UK SIREN healthcare worker cohort. Lancet Reg Health Eur. 2023;36:100809. Published 2023 Dec 14. doi:10.1016/j.lanepe.2023.100809
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Yoshimura M, Sakamoto A, Ozuru R, et al. Insufficient anti-spike RBD IgA responses after triple vaccination with intramuscular mRNA BNT162b2 vaccine against SARS-CoV-2. Heliyon. 2023;10(1):e23595. Published 2023 Dec 13. doi:10.1016/j.heliyon.2023.e23595
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Katsube K, Nagai T, Watanabe T. Recurrent Skin Rash, Epigastralgia, and Arthralgia After SARS-CoV-2 mRNA Immunization and Breakthrough Infection. Gastroenterology. 2024;167(2):e5-e8. doi:10.1053/j.gastro.2023.12.024
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Althaus T, Overton CE, Devaux I, et al. How effective is the BNT162b2 mRNA vaccine against SARS-CoV-2 transmission and infection? A national programme analysis in Monaco, July 2021 to September 2022. BMC Med. 2024;22(1):227. Published 2024 Jun 5. doi:10.1186/s12916-024-03444-6
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‘COVID-19 Vaccines Are Not as Effective or Safe as Advertised’: Journal ‘Public Health in Practice’
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Lataster R. Anti-science case study: COVID-19 vaccines’ effectiveness and safety exaggerated. Public Health Pract (Oxf). 2024;7:100517. Published 2024 May 23. doi:10.1016/j.puhip.2024.100517
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CDC Study Confirms mRNA Jab-Injected Children Without Prior SARS-CoV-2 Infection 159% More Likely to Be Infected, 257% More Likely to Develop Symptomatic COVID-19 Compared to Unvaccinated Children Without Prior Infection: Oxford Academic’s Journal ‘Pediatric Infectious Diseases Society’
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Feldstein LR, Ruffin J, Wiegand R, et al. Protection From COVID-19 Vaccination and Prior SARS-CoV-2 Infection Among Children Aged 6 Months-4 Years, United States, September 2022-April 2023. J Pediatric Infect Dis Soc. 2025;14(1):piae121. doi:10.1093/jpids/piae121
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Transmission
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Chaudhary A, Bansal P, Satija M, et al. Breakthrough COVID-19 Infection Among the General Community, Frontline Workers, and Healthcare Workers During the Second and Third Wave in North India: A Longitudinal Study. Cureus. 2024;16(4):e58860. Published 2024 Apr 23. doi:10.7759/cureus.58860
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Althaus T, Overton CE, Devaux I, et al. How effective is the BNT162b2 mRNA vaccine against SARS-CoV-2 transmission and infection? A national programme analysis in Monaco, July 2021 to September 2022. BMC Med. 2024;22(1):227. Published 2024 Jun 5. doi:10.1186/s12916-024-03444-6
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Kampf G. Does the COVID-19 Vaccination Reduce the Risk to Transmit SARS-CoV-2 to Others?. Adv Exp Med Biol. 2024;1457:247-264. doi:10.1007/978-3-031-61939-7_14
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Igyártó BZ, Qin Z. The mRNA-LNP vaccines – the good, the bad and the ugly?. Front Immunol. 2024;15:1336906. Published 2024 Feb 8. doi:10.3389/fimmu.2024.1336906
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COVID Vaccine Doesn’t Decrease Contagious Period for Children: ‘JAMA Pediatrics’
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Donzelli A, Berrino F. Duration of SARS-CoV-2 Culturable Virus Shedding in Children by Vaccination Status. JAMA Pediatr. 2024;178(4):420-421. doi:10.1001/jamapediatrics.2023.6604
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Illness
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COVID Shot Does Not Protect From Long COVID: Journal ‘Open Forum Infectious Diseases’
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Swift MD, Breeher LE, Dierkhising R, et al. Association of COVID-19 Vaccination With Risk of Medically Attended Postacute Sequelae of COVID-19 During the Ancestral, Alpha, Delta, and Omicron Variant Eras. Open Forum Infect Dis. 2024;11(9):ofae495. Published 2024 Aug 28. doi:10.1093/ofid/ofae495
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COVID and Flu Vaccines Do Not Reduce Severe Illness, Hospitalization, or Death: Study Preprint
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Kirsch S, Marik P, Rogers C, Cosgrove K, Mead MN. A Novel Practical Approach for Directly Assessing COVID-19 Vaccine Efficacy against Hospitalization. Preprints. Preprint posted online August 6, 2024. doi:10.20944/preprints202408.0338.v1
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Hospitalization
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Razimoghadam M, Daroudi R, Yaseri M. The effectiveness of COVID-19 vaccination in preventing hospitalisation and mortality: A nationwide cross-sectional study in Iran. J Glob Health. 2024;14:05026. Published 2024 Sep 27. doi:10.7189/jogh.14.05026
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Waning Immunity
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Second COVID-19 Booster Ineffective for Elderly: ‘Journal of Medical Virology’
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Carretero D, Giménez E, Albert E, et al. SARS-CoV-2-Spike T-cell response after receiving one or two Wuhan-Hu-1-based mRNA COVID-19 vaccine booster doses in elderly nursing home residents. J Med Virol. 2024;96(7):e29790. doi:10.1002/jmv.29790
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Kirwan PD, Hall VJ, Foulkes S, et al. Effect of second booster vaccinations and prior infection against SARS-CoV-2 in the UK SIREN healthcare worker cohort. Lancet Reg Health Eur. 2023;36:100809. Published 2023 Dec 14. doi:10.1016/j.lanepe.2023.100809
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COVID-19 Vaccine Immunity Wanes After Three Months: Journal ‘Genomics & Informatics’
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Lee B, Song H, Apio C, et al. An analysis of the waning effect of COVID-19 vaccinations. Genomics Inform. 2023;21(4):e50. doi:10.5808/gi.23088
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Death
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Alessandria M, Malatesta GM, Berrino F, Donzelli A. A Critical Analysis of All-Cause Deaths during COVID-19 Vaccination in an Italian Province. Microorganisms. 2024;12(7):1343. Published 2024 Jun 30. doi:10.3390/microorganisms12071343
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Hulscher N, Alexander PE, Amerling R, et al. Withdrawn: A systematic review of autopsy findings in deaths after COVID-19 vaccination. Forensic Sci Int. Published online June 21, 2024. doi:10.1016/j.forsciint.2024.112115
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3% of COVID-19 Jab Recipients Die: Journal ‘Informatics in Medicine Unlocked’
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Al-Rousan N, Al-Najjar H. Evaluation of the effects of MERCK, MODERNA, PFIZER/BioNTech, and JANSSEN COVID-19 vaccines on vaccinated people: A metadata analysis. Inform Med Unlocked. 2024;49:101564. Published online July 30, 2024. doi:10.1016/j.imu.2024.101564
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Saskia Mostert, Marcel Hoogland, Minke Huibers, Gertjan Kaspers – Excess mortality across countries in the Western World since the COVID-19 pandemic: ‘Our World in Data’ estimates of January 2020 to December 2022: BMJ Public Health. 2024;2:e000282
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Rancourt DG, Baudin M, Hickey J, Mercier J. COVID-19 vaccine-associated mortality in the Southern Hemisphere. CORRELATION Research in the Public Interest. Report. September 17, 2023. Available at: https://correlation-canada.org/covid-19-vaccine-associated-mortality-in-the-Southern-Hemisphere/.
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Hulscher N, Hodkinson R, Makis W, McCullough PA. Autopsy findings in cases of fatal COVID-19 vaccine-induced myocarditis. ESC Heart Fail. Published online January 14, 2024. doi:10.1002/ehf2.14680
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Helanne H, Forsblom E, Kainulainen K, Järvinen A, Kortela E. Incidence and outcome of hospital-acquired COVID-19 infections in secondary and tertiary care hospitals in the era of COVID-19 vaccinations. Antimicrob Steward Healthc Epidemiol. 2023;3(1):e216. Published 2023 Nov 30. doi:10.1017/ash.2023.489
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COVID-19 Jab Plays ‘Causal Role’ in Seizure Deaths: Journal ‘Academic Forensic Pathology’
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Prahlow JA. Deaths Related to New-Onset Seizures After Vaccination. Acad Forensic Pathol. Published online November 24, 2024. doi:10.1177/19253621241297029
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Skidmore M. COVID-19 illness and vaccination experiences in social circles affect COVID-19 vaccination decisions. Sci Public Health Policy Law. 2023;4:208-226
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Aarstad J, Kvitastein OA. Is there a link between the 2021 COVID-19 vaccination uptake in Europe and 2022 excess all-cause mortality? Asian Pac J Health Sci. 2023;10(1):25-31. doi:10.21276/apjhs.2023.10.1.6
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Pantazatos SP, Seligmann H. COVID vaccination and age-stratified all-cause mortality risk. Preprint. October 2021. doi:10.13140/RG.2.2.28257.43366/1
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‘Deaths Related to New-Onset Seizures After Vaccination’: Journal ‘Academic Forensic Pathology’
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Prahlow JA. Deaths Related to New-Onset Seizures After Vaccination. Acad Forensic Pathol. Published online November 24, 2024. doi:10.1177/19253621241297029
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Considerando que hay evidencia sustancial que indica que las inyecciones basadas en ADN/ARN están asociadas con eventos adversos generalizados y graves, incluidos miles de lesiones documentadas, casos no reportados y aumentos significativos en los daños relacionados con los productos farmacéuticos y el exceso de mortalidad.
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Adverse Events (AEs)/Hospitalizations/Deaths
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Pfizer. 5.3.6 Cumulative Analysis of Post-authorization Adverse Event Reports of PF-07302048 (BNT162B2) Received Through 28-Feb-2021. April 30, 2021.
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Harvard Doctors’ HHS Congressional Report Confirms Hundred-Fold More AEs Than CDC’s VAERS Reports
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Lazarus R, Klompas M. Electronic Support for Public Health–Vaccine Adverse Event Reporting System (ESP:VAERS). Final Report. Agency for Healthcare Research and Quality (AHRQ); 2011. Grant ID: R18 HS 017045.
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Lee S, Lee K, Park J, et al. Global burden of vaccine-associated hepatobiliary and gastrointestinal adverse drug reactions, 1967-2023: A comprehensive analysis of the international pharmacovigilance database. J Med Virol. 2024;96(7):e29792. doi:10.1002/jmv.29792
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European Medicines Agency. Clinical trial results for trial 2020-005226-28. EU Clinical Trials Register. Published 23 Nov 2023. Accessed February 13, 2025. https://www.clinicaltrialsregister.eu/ctr-search/trial/2020-005226-28/results
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Country Underreports COVID-19 Jab Injuries by 99%: ‘European Journal of Clinical Investigation’
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Fürst T, Šourek P, Krátká Z, Janošek J. Batch-dependent safety of COVID-19 vaccines in the Czech Republic and comparison with data from Denmark. Eur J Clin Invest. 2024;54(10):e14271. doi:10.1111/eci.14271
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Igyártó BZ, Qin Z. The mRNA-LNP vaccines – the good, the bad and the ugly?. Front Immunol. 2024;15:1336906. Published 2024 Feb 8. doi:10.3389/fimmu.2024.1336906
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Montes-Grajales D, Garcia-Serna R, Mestres J. Impact of the COVID-19 pandemic on the spontaneous reporting and signal detection of adverse drug events. Sci Rep. 2023;13(1):18817. Published 2023 Nov 1. doi:10.1038/s41598-023-46275-w
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Tsang RS, Agrawal U, Joy M, et al. Adverse events after first and second doses of COVID-19 vaccination in England: a national vaccine surveillance platform self-controlled case series study. J R Soc Med. 2024;117(4):134-148. doi:10.1177/01410768231205430
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Shin J, Shim SR, Lee J, Ryu HS, Kim JY. Otorhinolaryngologic complications after COVID-19 vaccination, vaccine adverse event reporting system (VAERS). Front Public Health. 2024;11:1338862. Published 2024 Jan 10. doi:10.3389/fpubh.2023.1338862
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Mostert S, Hoogland M, Huibers M, Kaspers G. Excess mortality across countries in the Western World since the COVID-19 pandemic: ‘Our World in Data’ estimates of January 2020 to December 2022. BMJ Public Health. 2024;2:e000282. doi:10.1136/bmjph-2023-000282
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COVID-19 Injection Doubles Risk of Post-COVID Death After 1 Year: Journal ‘Frontiers’
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Rodrigues NCP, Andrade MKN. Evaluation of post-COVID mortality risk in cases classified as severe acute respiratory syndrome in Brazil: a longitudinal study for medium and long term. Front Med (Lausanne). 2024;11:1495428. Published 2024 Dec 18. doi:10.3389/fmed.2024.1495428
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Considerando que numerosas organizaciones de salud, profesionales médicos y gobiernos Internacionales han pedido una moratoria inmediata sobre las intervenciones farmacéuticas de ARNm, citando graves preocupaciones de salud, riesgos documentados y la urgente necesidad de investigaciones exhaustivas sobre su seguridad y eficacia.
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Calls for COVID-19 Shot Moratorium
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Dozens of Countries Demand ‘Immediate Suspension of COVID-19 Modified mRNA Vaccines’: NORTH Group
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Mead MN, Seneff S, Rose J, Wolfinger R, Hulscher N, McCullough PA. COVID-19 Modified mRNA “Vaccines”: Lessons Learned from Clinical Trials, Mass Vaccination, and the Bio-Pharmaceutical Complex, Part 2. Int J Vaccine Theory Pract Res. 2024;3(2):1275-1286. doi:10.56098/w66wjg87
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Rogers C, Thorp JA, Cosgrove K, McCullough PA. COVID-19 Vaccines: A Risk Factor for Cerebral Thrombotic Syndromes. Int J Innov Res Med Sci. 2024;9(11):621-627. doi:10.23958/ijirms/vol09-i11/1982
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Over 17,000 International Physicians, Scientists Declare COVID-19 Injections ‘Must End,’ ‘Cause Far More Harm Than Good,’ ‘Provide Zero Benefit Relative to Risk,’ ‘Do Not Reduce’ Infection, Make Individuals ‘More Likely to Become Infected or Have Disease or Even Death’: COVID Collaborative ‘Global Summit’
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Oldfield PR, Gutschi LM, McCullough PA, Speicher DJ. Pfizer/BioNTech’s COVID-19 modRNA Vaccines: Dangerous Genetic Mechanism of Action Released Before Sufficient Preclinical Testing. J Am Phys Surg. 2024;29(4):118-126.
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‘More Than 81,000 Physicians, Scientists, Researchers, and Concerned Citizens, 240 Elected Government Officials, 17 Professional Public Health and Physician Organizations, 2 State Republican Parties, 17 Republican Party County Committees, and 6 Scientific Studies from Across the World Have Called for the Market Withdrawal of COVID-19 Vaccines’: Journal ‘Science, Public Health Policy and The Law’
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Oldfield PR, Gutschi LM, McCullough PA, Speicher DJ. Pfizer/BioNTech’s COVID-19 modRNA Vaccines: Dangerous Genetic Mechanism of Action Released Before Sufficient Preclinical Testing. J Am Phys Surg. 2024;29(4):118-126.
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Considerando que el Cirujano General de Florida, Joseph Ladapo, ha desaconsejado públicamente el uso de vacunas de ARNm contra la COVID-19 para 23 millones de floridanos, citando riesgos significativos que incluyen miocarditis, enfermedad autoinmune, efectividad negativa, mayor riesgo de infección, proteína de pico persistente, posible integración de ADN y preocupaciones de contaminación que involucran secuencias SV40, que aumentan la urgencia de tomar medidas de precaución para proteger la salud pública.
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Florida Surgeon General Joseph Ladapo Advises Against mRNA COVID-19 Vaccines
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Florida Surgeon General Advises Against Using mRNA COVID-19 Jabs for 23 Million Floridians, Citing Risk of Myocarditis, POTS, Autoimmune Disease, Negative Effectiveness and Increased Infection Risk, Persisting Spike Protein in Body, DNA Integration, Other ‘Unknown Risk’
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Florida Surgeon General Calls for Halt in Use of COVID-19 mRNA Vaccines for 23 Million Floridians, Citing DNA Integration Risk
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Marks P, Califf R. Is Vaccination Approaching a Dangerous Tipping Point?. JAMA. 2024;331(4):283-284. doi:10.1001/jama.2023.27685
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COVID-19 Vaccines May Pose ‘Unique and Heightened Risk’ of Contaminated DNA Fragment Integration into Human Body: Florida Surgeon General
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Considerando que las inyecciones basadas en ADN/ARN carecen de estudios de seguridad aleatorizados, controlados con placebo, doble ciego y a largo plazo, y los principales vacunólogos admiten que estas vacunas no han sido probadas adecuadamente en cuanto a su seguridad, lo que aumenta aún más las preocupaciones sobre su uso generalizado.
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Not Properly Tested: No Long Term, Double Blind, Placebo Controlled, Randomized Safety Studies
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Salmon DA, Orenstein WA, Plotkin SA, Chen RT. Funding Postauthorization Vaccine-Safety Science. N Engl J Med. 2024;391(2):102-105. doi:10.1056/NEJMp2402379
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Considerando que se ha descubierto que las inyecciones basadas en ADN/ARN contienen niveles peligrosos de contaminación del ADN (que superan los límites permitidos por la FDA en más de 500 veces), incluidas secuencias SV40 vinculadas al cáncer, sin evidencia de que se hayan realizado evaluaciones adecuadas del riesgo de integración del ADN, lo que plantea riesgos significativos y únicos para la salud humana.
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Contamination
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Raoult D. Confirmation of the presence of vaccine DNA in the Pfizer anti-COVID-19 vaccine. HAL Preprint. 2024. Available at: https://hal.science/hal-04778576v1.
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König B, Kirchner JO. Methodological Considerations Regarding the Quantification of DNA Impurities in the COVID-19 mRNA Vaccine Comirnaty®. Methods Protoc. 2024;7(41). doi:10.3390/mps7030041.
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Multiple Reports have Find DNA Contamination in COVID-19 Jabs, Reported Across Multiple Manufacturers, Vaccine Platforms, and Geographic Regions, Far Exceeds Regulatory Thresholds Recommend by European Medicines Agency (EMA) and U.S. Food and Drug Administration (FDA): Journal ‘Science, Public Health Policy and The Law’
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Hulscher N, Bowden MT, McCullough PA. Calls for Market Removal of COVID-19 Vaccines Intensify as Risks Far Outweigh Theoretical Benefits. Sci Public Health Policy Law. 2025;6:2019-2025.
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‘BioNTech RNA-Based COVID-19 Injections Contain Large Amounts Of Residual DNA Including An SV40 Promoter/Enhancer Sequence’: Journal ‘Science, Public, Health Policy and The Law
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Kämmerer U, Schulz V, Steger K. BioNTech RNA-Based COVID-19 Injections Contain Large Amounts of Residual DNA Including an SV40 Promoter/Enhancer Sequence. Sci Public Health Policy Law. 2024;5:2019-2024.
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Considerando que la presencia de SV40, una secuencia vinculada al cáncer, en las vacunas de ARNm contra la COVID-19 ha suscitado importantes preocupaciones de seguridad, con evidencia de contaminación que excede los límites de la FDA y advertencias del Cirujano General de Florida sobre su posible riesgo de integración en el genoma humano.
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SV40
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Raoult D. Confirmation of the presence of vaccine DNA in the Pfizer anti-COVID-19 vaccine. HAL Preprint. 2024. Available at: https://hal.science/hal-04778576v1.
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‘BioNTech RNA-Based COVID-19 Injections Contain Large Amounts Of Residual DNA Including An SV40 Promoter/Enhancer Sequence’: Journal ‘Science, Public, Health Policy and The Law
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Kämmerer U, Schulz V, Steger K. BioNTech RNA-Based COVID-19 Injections Contain Large Amounts of Residual DNA Including an SV40 Promoter/Enhancer Sequence. Sci Public Health Policy Law. 2024;5:2019-2024.
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Considerando que las inyecciones basadas en ADN/ARN pueden plantear riesgos significativos de integración genética, y que la evidencia plantea serias preocupaciones sobre la posibilidad de que fragmentos de ADN contaminados y productos de ARNm se integren en el genoma humano, como lo destacan datos y advertencias recientes del Cirujano General de Florida.
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Genetic (DNA/RNA) Integration
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Igyártó BZ, Qin Z. The mRNA-LNP vaccines – the good, the bad and the ugly?. Front Immunol. 2024;15:1336906. Published 2024 Feb 8. doi:10.3389/fimmu.2024.1336906
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‘Intracellular Reverse Transcription of Pfizer BioNTech COVID-19 mRNA Vaccine BNT162b2 In Vitro in Human Liver Cell Line’: Journal ‘Current Issues in Molecular Biology’
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Aldén M, Olofsson Falla F, Yang D, et al. Intracellular Reverse Transcription of Pfizer BioNTech COVID-19 mRNA Vaccine BNT162b2 In Vitro in Human Liver Cell Line. Curr Issues Mol Biol. 2022;44(3):1115-1126. Published 2022 Feb 25. doi:10.3390/cimb44030073
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Considerando que los ingredientes utilizados en las inyecciones basadas en ADN/ARN, incluidas las nanopartículas lipídicas, pseudouridina, SM-102, ALC-0315, PEG y trometamina, se han relacionado con toxicidad, carcinogenicidad, respuestas inmunes no deseadas y otros efectos nocivos, con preocupaciones adicionales con respecto a la persistencia de la proteína de pico patógena y la presencia de elementos químicos tóxicos no declarados.
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Ingredient Toxicity/Carcinogenicity
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Lipid Nanotechnology
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Moderna Scientists Admit ‘Risks of mRNA Drug and Vaccine Toxicity’: Journal ‘Nature’
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Bitounis D, Jacquinet E, Rogers MA, Amiji MM. Strategies to reduce the risks of mRNA drug and vaccine toxicity. Nat Rev Drug Discov. 2024;23(4):281-300. doi:10.1038/s41573-023-00859-3
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Rubio-Casillas A, Cowley D, Raszek M, Uversky VN, Redwan EM. Review: N1-methyl-pseudouridine (m1Ψ): Friend or foe of cancer? [published correction appears in Int J Biol Macromol. 2024 Jun;270(Pt 2):132447. doi: 10.1016/j.ijbiomac.2024.132447.]. Int J Biol Macromol. 2024;267(Pt 1):131427. doi:10.1016/j.ijbiomac.2024.131427
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Mulroney TE, Pöyry T, Yam-Puc JC, et al. N1-methylpseudouridylation of mRNA causes +1 ribosomal frameshifting. Nature. 2024;625(7993):189-194. doi:10.1038/s41586-023-06800-3
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Tromethamine
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PEG
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Barta BA, Radovits T, Dobos AB, et al. Comirnaty-induced cardiopulmonary distress and other symptoms of complement-mediated pseudo-anaphylaxis in a hyperimmune pig model: Causal role of anti-PEG antibodies. Vaccine X. 2024;19:100497. Published 2024 May 23. doi:10.1016/j.jvacx.2024.100497
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‘COVID-19 Spike Protein Is Pathogenic, from Both Virus and Vaccine mRNA’: Journal ‘Biomedicines’
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Parry PI, Lefringhausen A, Turni C, et al. ‘Spikeopathy’: COVID-19 Spike Protein Is Pathogenic, from Both Virus and Vaccine mRNA. Biomedicines. 2023;11(8):2287. Published 2023 Aug 17. doi:10.3390/biomedicines11082287
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Spike Protein ‘Possible Primary Contributing Factor to Long COVID’: Journal ‘Cureus’
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Hulscher N, Procter BC, Wynn C, McCullough PA. Clinical Approach to Post-acute Sequelae After COVID-19 Infection and Vaccination. Cureus. 2023;15(11):e49204. Published 2023 Nov 21. doi:10.7759/cureus.49204
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Mikami S, Ishii M, Yano T, et al. Multifocal meningoencephalitis after vaccination against COVID-19. Pathol Int. 2024;74(12):697-703. doi:10.1111/pin.13491
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Baumeier C, Aleshcheva G, Harms D, et al. Intramyocardial Inflammation after COVID-19 Vaccination: An Endomyocardial Biopsy-Proven Case Series. Int J Mol Sci. 2022;23(13):6940. Published 2022 Jun 22. doi:10.3390/ijms23136940
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Brogna C, Cristoni S, Marino G, et al. Detection of recombinant Spike protein in the blood of individuals vaccinated against SARS-CoV-2: Possible molecular mechanisms. Proteomics Clin Appl. 2023;17(6):e2300048. doi:10.1002/prca.202300048
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Other
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Diblasi L, Monteverde M, Nonis D, Sangorrín M. At Least 55 Undeclared Chemical Elements Found in COVID-19 Vaccines from AstraZeneca, CanSino, Moderna, Pfizer, Sinopharm, and Sputnik V, with Precise ICP-MS. Int J Vaccine Theory Pract Res. 2024;3(2):1367-1384. doi:10.56098/mt1njj52.
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Considerando que aproximadamente un tercio de los receptores de la vacuna de ARNm contra la COVID-19 experimentan respuestas inmunes no deseadas causadas por un fenómeno conocido como «cambio de marco de lectura», según lo documentado por la Universidad de Cambridge, lo que genera preocupaciones importantes sobre la seguridad y previsibilidad de estas intervenciones.
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Frameshifting
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Mulroney TE, Pöyry T, Yam-Puc JC, et al. N1-methylpseudouridylation of mRNA causes +1 ribosomal frameshifting. Nature. 2024;625(7993):189-194. doi:10.1038/s41586-023-06800-3
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Considerando que las inyecciones basadas en ADN/ARN exhiben una biodistribución y bioacumulación de área amplia, con proteínas de pico y secuencias de ARNm detectadas en órganos críticos como el cerebro, el corazón y las glándulas endocrinas, así como en la sangre, la placenta y el feto, lo que genera serias preocupaciones sobre los efectos sistémicos y a largo plazo en la salud humana.
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Wide-Area Biodistribution/Bioaccumulation
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Mikami S, Ishii M, Yano T, et al. Multifocal meningoencephalitis after vaccination against COVID-19. Pathol Int. 2024;74(12):697-703. doi:10.1111/pin.13491
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Vaccine Spike Protein Found in Brain, Heart of Deceased COVID-Vaccinated: Journal ‘Vaccines’
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Mörz M. A Case Report: Multifocal Necrotizing Encephalitis and Myocarditis after BNT162b2 mRNA Vaccination against COVID-19. Vaccines (Basel). 2022;10(10):1651. Published 2022 Oct 1. doi:10.3390/vaccines10101651
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Brogna C, Cristoni S, Marino G, et al. Detection of recombinant Spike protein in the blood of individuals vaccinated against SARS-CoV-2: Possible molecular mechanisms. Proteomics Clin Appl. 2023;17(6):e2300048. doi:10.1002/prca.202300048
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‘Pervasive Distribution’ of mRNA Body-Wide in COVID-Vaccinated: ‘The Journal of Gene Medicine’
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Hulscher N, McCullough PA, Marotta DE. Strategic deactivation of mRNA COVID-19 vaccines: New applications for siRNA therapy and RIBOTACs. J Gene Med. 2024;26(9):e3733. doi:10.1002/jgm.3733
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Zhong C, Cohen K, Lin X, Schiller E, Sharma S, Hanna N. COVID-19 Vaccine mRNA Biodistribution: Maternal and Fetal Exposure Risks. Am J Reprod Immunol. 2024;92(4):e13934. doi:10.1111/aji.13934
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Castruita JAS, Schneider UV, Mollerup S, et al. SARS-CoV-2 spike mRNA vaccine sequences circulate in blood up to 28 days after COVID-19 vaccination. APMIS. 2023;131(3):128-132. doi:10.1111/apm.13294
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‘Circulation of mRNA Lipid Nanoparticles Into the Blood’: Journal ‘ACS Nano’
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Kent SJ, Li S, Amarasena TH, et al. Blood Distribution of SARS-CoV-2 Lipid Nanoparticle mRNA Vaccine in Humans. ACS Nano. 2024;18(39):27077-27089. doi:10.1021/acsnano.4c11652
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Considerando que se ha demostrado que los componentes de las inyecciones basadas en ADN/ARN, incluidas las proteínas de pico y las secuencias de ARNm, persisten en el cuerpo mucho más tiempo de lo que se afirmó inicialmente (hasta 245 días en algunos casos), lo que plantea preocupaciones críticas sobre sus efectos a largo plazo en la salud humana y la estabilidad sistémica.
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Persistence of Vaccine Components
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Boros LG, Kyriakopoulos AM, Brogna C, Piscopo M, McCullough PA, Seneff S. Long-lasting, biochemically modified mRNA, and its frameshifted recombinant spike proteins in human tissues and circulation after COVID-19 vaccination. Pharmacol Res Perspect. 2024;12(3):e1218. doi:10.1002/prp2.1218
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Patterson BK, Yogendra R, Francisco EB, Long E, Pise A, Osgood E, Bream J, Kreimer M, Jeffers D, Beaty C, Vander Heide R, Guevara-Coto J, Mora-Rodríguez RA. Persistence of S1 Spike Protein in CD16+ Monocytes up to 245 Days in SARS-CoV-2 Negative Post COVID-19 Vaccination Individuals with Post-Acute Sequelae of COVID-19 (PASC)-Like Symptoms. medRxiv. Published March 24, 2024. doi:10.1101/2024.03.24.24304286.
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Castruita JAS, Schneider UV, Mollerup S, et al. SARS-CoV-2 spike mRNA vaccine sequences circulate in blood up to 28 days after COVID-19 vaccination. APMIS. 2023;131(3):128-132. doi:10.1111/apm.13294
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Kent SJ, Li S, Amarasena TH, et al. Blood Distribution of SARS-CoV-2 Lipid Nanoparticle mRNA Vaccine in Humans. ACS Nano. 2024;18(39):27077-27089. doi:10.1021/acsnano.4c11652
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Krauson AJ, Casimero FVC, Siddiquee Z, Stone JR. Duration of SARS-CoV-2 mRNA vaccine persistence and factors associated with cardiac involvement in recently vaccinated patients. NPJ Vaccines. 2023;8(1):141. Published 2023 Sep 27. doi:10.1038/s41541-023-00742-7
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Considerando que las inyecciones basadas en ADN/ARN se han asociado fuertemente con eventos cardiovasculares y trombóticos graves, incluyendo miocarditis, pericarditis, coágulos sanguíneos y miocardiopatía, con aumentos documentados en informes de eventos adversos y muertes súbitas, particularmente entre individuos jóvenes, lo que genera preocupaciones urgentes sobre su seguridad y uso generalizado.
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Heart/Cardiovascular/Thrombotic Events: Myocarditis/Pericarditis/Blood Clots
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Lee S, Jo H, Lee H, et al. Global estimates on the reports of vaccine-associated myocarditis and pericarditis from 1969 to 2023: Findings with critical reanalysis from the WHO pharmacovigilance database. J Med Virol. 2024;96(6):e29693. doi:10.1002/jmv.29693
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Heart Disease Occurs ‘Only in the Vaccinated Groups’ in Children: Oxford/Harvard COVID Jab Study
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Andrews CD, Parker EP, Horne E, et al. OpenSAFELY: Effectiveness of COVID-19 vaccination in children and adolescents. medRxiv. Published May 20, 2024. doi:10.1101/2024.05.20.24306810.
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Hulscher N, Cook MJ, Stricker RB, McCullough PA. Excess Cardiopulmonary Arrest and Mortality After COVID-19 Vaccination in King County, Washington. J Emerg Med OA. 2024;2(1):1-11.
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Nishizawa A, Kawakami M, Kitahara Y. Case report: A case of metastatic BRAFV600-mutated melanoma with heart failure treated with immune checkpoint inhibitors and BRAF/MEK inhibitors. Front Oncol. 2024;14:1366532. Published 2024 Mar 11. doi:10.3389/fonc.2024.1366532
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Myocarditis Risk 9x Greater Following 3rd COVID-19 Jab: ‘Journal of Evidence-Based Medicine’
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Lai D, Lim D, Lu J, Wang H, Huang T, Zhang YD. Risk of myocarditis after three doses of COVID-19 mRNA vaccines in the United States, 2020-2022: A self-controlled case series study. J Evid Based Med. 2024;17(1):65-77. doi:10.1111/jebm.12595
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Faksova K, Walsh D, Jiang Y, et al. COVID-19 vaccines and adverse events of special interest: A multinational Global Vaccine Data Network (GVDN) cohort study of 99 million vaccinated individuals. Vaccine. 2024;42(9):2200-2211. doi:10.1016/j.vaccine.2024.01.100
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Rezvani M, Mahmoodkhani M, Sourani A, et al. Treatment refractory acute necrotizing myelitis after COVID-19 vaccine injection: a case report. Ann Med Surg (Lond). 2024;86(2):1185-1190. Published 2024 Jan 3. doi:10.1097/MS9.0000000000001662
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Rezvani M, Sabouri M, Aminmansour B, et al. Spontaneous spinal epidural haematoma following COVID-19 vaccination: a case report. Ann Med Surg (Lond). 2023;86(1):612-619. Published 2023 Dec 8. doi:10.1097/MS9.0000000000001604
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Hulscher N, Hodkinson R, Makis W, McCullough PA. Autopsy findings in cases of fatal COVID-19 vaccine-induced myocarditis. ESC Heart Fail. Published online January 14, 2024. doi:10.1002/ehf2.14680
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Kumar A, Shariff M, Lee J, et al. Ventricular fibrillation and ventricular tachycardia post-SARS-CoV-2-targeted mRNA/viral vector vaccination. Heart Rhythm O2. 2023;4(12):826-828. Published 2023 Nov 2. doi:10.1016/j.hroo.2023.11.001
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COVID-19 Vaccine Induces ‘Broken Heart Syndrome’ (Cardiomyopathy): Journal ‘Cureus’
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Singh B, Manita B, Suman F, et al. A Systematic Review of COVID-19 Vaccine-Induced Takotsubo Cardiomyopathy: A 2023 Update. Cureus. 2023;15(12):e50319. Published 2023 Dec 11. doi:10.7759/cureus.50319
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Tan JZ, Zhang DZ, Sundararaghavan S, et al. Chest pain attendances to a Paediatric Emergency Department pre- and post-COVID-19 vaccination. Transl Pediatr. 2023;12(11):2010-2019. doi:10.21037/tp-23-230
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Dorajoo SR, Tan HX, Teo CHD, et al. Nationwide safety surveillance of COVID-19 mRNA vaccines following primary series and first booster vaccination in Singapore. Vaccine X. 2023;15:100419. Published 2023 Dec 2. doi:10.1016/j.jvacx.2023.100419
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‘Fatal Myocarditis following COVID-19 mRNA Immunization’: Journal ‘Vaccines’
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Sousa PMB, Silva EA, Campos MAG, Lages JS, Corrêa RDGCF, Silva GEB. Fatal Myocarditis following COVID-19 mRNA Immunization: A Case Report and Differential Diagnosis Review. Vaccines (Basel). 2024;12(2):194. Published 2024 Feb 13. doi:10.3390/vaccines12020194
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Baumeier C, Aleshcheva G, Harms D, et al. Intramyocardial Inflammation after COVID-19 Vaccination: An Endomyocardial Biopsy-Proven Case Series. Int J Mol Sci. 2022;23(13):6940. Published 2022 Jun 22. doi:10.3390/ijms23136940
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Castruita JAS, Schneider UV, Mollerup S, et al. SARS-CoV-2 spike mRNA vaccine sequences circulate in blood up to 28 days after COVID-19 vaccination. APMIS. 2023;131(3):128-132. doi:10.1111/apm.13294
-
-
-
Kent SJ, Li S, Amarasena TH, et al. Blood Distribution of SARS-CoV-2 Lipid Nanoparticle mRNA Vaccine in Humans. ACS Nano. 2024;18(39):27077-27089. doi:10.1021/acsnano.4c11652
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-
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Krauson AJ, Casimero FVC, Siddiquee Z, Stone JR. Duration of SARS-CoV-2 mRNA vaccine persistence and factors associated with cardiac involvement in recently vaccinated patients. NPJ Vaccines. 2023;8(1):141. Published 2023 Sep 27. doi:10.1038/s41541-023-00742-7
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Jeon HE, Lee S, Lee J, et al. SARS-CoV2 mRNA vaccine intravenous administration induces myocarditis in chronic inflammation. PLoS One. 2024;19(10):e0311726. Published 2024 Oct 10. doi:10.1371/journal.pone.0311726
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Schreckenberg R, Woitasky N, Itani N, Czech L, Ferdinandy P, Schulz R. Cardiac side effects of RNA-based SARS-CoV-2 vaccines: Hidden cardiotoxic effects of mRNA-1273 and BNT162b2 on ventricular myocyte function and structure. Br J Pharmacol. 2024;181(3):345-361. doi:10.1111/bph.16262
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Rogers C, Thorp JA, Cosgrove K, McCullough PA. COVID-19 Vaccines: A Risk Factor for Cerebral Thrombotic Syndromes. Int J Innov Res Med Sci. 2024;9(11). doi:10.23958/ijirms/vol09-i11/1982.
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Mendes-de-Almeida DP; Brazilian VITT Investigative Collaboration Group, Mouta Nunes de Oliveira P, et al. Vaccine-induced immune thrombotic thrombocytopenia post COVID-19 booster vaccination in Brazil: a case series. Res Pract Thromb Haemost. 2023;7(8):102243. Published 2023 Oct 31. doi:10.1016/j.rpth.2023.102243
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Superior Mesenteric Vein Thrombosis Due to COVID-19 Vaccination: ‘Journal of Medical Case Reports’
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Suto K, Saito A, Mori K, Yoshida A, Sata N. Superior mesenteric vein thrombosis due to COVID-19 vaccination: a case report. J Med Case Rep. 2024;18(1):23. Published 2024 Jan 11. doi:10.1186/s13256-023-04320-2
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Acute Myocarditis Following COVID-19 mRNA Vaccination: Journal ‘Radiology Case Reports’
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Yeo SZJ, Ho CL. COVID-19 mRNA vaccine-related myocarditis: A PRISMA systematic review, imaging approach and differential diagnoses. Radiol Case Rep. 2023;19(3):1008-1019. Published 2023 Dec 22. doi:10.1016/j.radcr.2023.11.070
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Rose J, Hulscher N, McCullough PA. Determinants of COVID-19 vaccine-induced myocarditis. Ther Adv Drug Saf. 2024;15:20420986241226566. Published 2024 Jan 27. doi:10.1177/20420986241226566
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‘COVID-19 Vaccines-Associated Takotsubo Cardiomyopathy’: Journal ‘Le Infezioni in Medicina’
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Hassanzadeh S, Suleiman A, Correia JJ, Montazerin SM. COVID-19 vaccines-associated Takotsubo cardiomyopathy: A narrative review. Infez Med. 2024;32(1):1-11. Published 2024 Mar 1. doi:10.53854/liim-3201-1
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Lai D, Lim D, Lu J, Wang H, Huang T, Zhang YD. Risk of myocarditis after three doses of COVID-19 mRNA vaccines in the United States, 2020-2022: A self-controlled case series study. J Evid Based Med. 2024;17(1):65-77. doi:10.1111/jebm.12595
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Sularz AK, Hua A, Ismail T. SARS-CoV-2 vaccines and myocarditis. Clin Med (Lond). 2023;23(5):495-502. doi:10.7861/clinmed.2023-0049
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Shimura M, Fujikawa H, Yazawa M, Matsumoto Y, Yamada M. An Autopsy Case of Reversible Cerebral Vasoconstriction Syndrome After a Severe Acute Respiratory Syndrome Coronavirus 2 Vaccination. Cureus. 2024;16(4):e59311. Published 2024 Apr 29. doi:10.7759/cureus.59311
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‘Transient Aortitis after COVID-19 mRNA Vaccination’: ‘Mediterranean Journal of Rheumatology’
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Nishioka H, Okumura Y. Transient Aortitis after COVID-19 mRNA Vaccination. Mediterr J Rheumatol. 2023;35(1):195-196. Published 2023 Oct 20. doi:10.31138/mjr.231020.nht
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Latchupatula L, Benayon M, Yang L, Ganame J, Tandon V. COVID-19 mRNA Vaccination-Induced Myopericarditis in an Otherwise Healthy Young Male: An Evidence-Based Approach to Differentiating From Perimyocarditis. Cureus. 2024;16(5):e59999. Published 2024 May 9. doi:10.7759/cureus.59999
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Xu S, Sy LS, Han B, et al. A propensity score approach and a partitioned approach for the self-controlled case series design to evaluate safety of a 2-dose vaccine series: application to myocarditis/pericarditis following mRNA COVID-19 vaccination. Am J Epidemiol. 2025;194(1):254-266. doi:10.1093/aje/kwae141
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Hashimoto K, Yamamoto H, Ikeda Y, Isogai J, Hashimoto T. A case of biopsy-proven inflammatory dilated cardiomyopathy following heterologous mRNA-1273 third-dose immunization. ESC Heart Fail. 2024;11(6):4442-4449. doi:10.1002/ehf2.14924
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Furukawa A, Suzuki Y, Nozuki N, et al. Case report: A case of unilateral combined central retinal vein occlusion, incomplete central retinal artery occlusion, and papillitis following a third dose of COVID-19 vaccination. Front Ophthalmol (Lausanne). 2024;4:1352962. Published 2024 Feb 23. doi:10.3389/fopht.2024.1352962
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Haga Y, Ohara A, Yakuwa T, et al. Persistently High Platelet Factor 4 Levels in an Adolescent with Recurrent Late Thrombotic Complications after SARS-CoV-2 mRNA Vaccination. Hematol Rep. 2024;16(3):504-511. Published 2024 Jul 29. doi:10.3390/hematolrep16030048
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Miskovic R, Radovic S, Arandjelovic S, et al. Onset of leukocytoclastic vasculitis following covid-19 vaccination: case based comprehensive review. Rheumatol Int. 2024;44(11):2621-2635. doi:10.1007/s00296-024-05718-x
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Considerando que las inyecciones basadas en ADN/ARN se han vinculado a complicaciones pulmonares y respiratorias graves, incluidos mayores riesgos de asma, síndrome de dificultad respiratoria aguda, exacerbación de la fibrosis pulmonar y trastornos respiratorios sistémicos, lo que pone de relieve importantes preocupaciones sobre su impacto en la salud respiratoria.
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Lung/Pulmonary/Respiratory
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Children Who Receive COVID-19 Jab Nearly Twice as Likely to Develop Asthma: Journal ‘Infection’
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Yang CY, Shih YH, Lung CC. The association between COVID-19 vaccine/infection and new-onset asthma in children – based on the global TriNetX database. Infection. Published online June 21, 2024. doi:10.1007/s15010-024-02329-3
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Dorajoo SR, Tan HX, Teo CHD, et al. Nationwide safety surveillance of COVID-19 mRNA vaccines following primary series and first booster vaccination in Singapore. Vaccine X. 2023;15:100419. Published 2023 Dec 2. doi:10.1016/j.jvacx.2023.100419
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Tsumura K, Zaizen Y, Umemoto S, et al. Acute exacerbation of idiopathic pulmonary fibrosis after bivalent {tozinameran and famtozinameran} mRNA COVID-19 vaccination. Respir Med Case Rep. 2023;46:101960. Published 2023 Dec 9. doi:10.1016/j.rmcr.2023.101960
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Kawano F, Kato M, Tsuchida Y, Okawa J, Arimoto H. Acute Respiratory Distress Syndrome After Severe Acute Respiratory Syndrome Coronavirus (SARS-CoV-2) Vaccination: Findings From an Autopsy. Cureus. 2024;16(9):e70370. Published 2024 Sep 28. doi:10.7759/cureus.70370
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Hulscher N, McCullough PA. Delayed Fatal Pulmonary Hemorrhage Following COVID-19 Vaccination: Case Report, Batch Analysis, and Proposed Autopsy Checklist. Int J Innov Res Med Sci. 2025;10(02). doi:10.23958/ijirms/vol10-i02/2035.
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Considerando que las inyecciones basadas en ADN/ARN se han visto implicadas en alteraciones endocrinas, incluida la aparición de niveles anormales de glucosa en sangre, lo que genera preocupación sobre sus efectos sobre la salud metabólica y hormonal.
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Endocrine
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Mungmunpuntipantip R, Wiwanitkit V. COVID-19 Vaccination and Abnormal Blood Glucose Level. Adv Biomed Res. 2023;12:258. Published 2023 Nov 29. doi:10.4103/abr.abr_195_23
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Considerando que las inyecciones basadas en ADN/ARN se han asociado con riesgos pediátricos significativos, incluida una mayor prevalencia de enfermedades en los bebés, mayores tasas de enfermedades cardíacas, ansiedad, depresión y efectos neurológicos adversos en los niños, así como impactos alarmantes en el desarrollo de la descendencia, lo que genera profundas preocupaciones sobre su seguridad en poblaciones vulnerables.
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Pediatric
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Jablonowski K, Hooker B. Adverse Outcomes Are Increased with Exposure to Added Combinations of Infant Vaccines. Int J Vaccine Theory Pract Res. 2024;3(2):1103-1111. doi:10.56098/xfzkf650.
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Pradhan DD, Jena P, Misra S, Meher BK, Das L. Impact of Covid-19 on Psychosocial Well-Being of School-Going Children: A Cross-Sectional Study. Cureus. 2024;16(6):e62561. Published 2024 Jun 17. doi:10.7759/cureus.62561
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Heart Disease Occurs ‘Only in the Vaccinated Groups’ in Children: Oxford/Harvard COVID Jab Study
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Andrews CD, Parker EP, Horne E, et al. OpenSAFELY: Effectiveness of COVID-19 vaccination in children and adolescents. medRxiv. Published May 20, 2024. doi:10.1101/2024.05.20.24306810.
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COVID Vaccine Doesn’t Decrease Contagious Period for Children: ‘JAMA Pediatrics’
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Donzelli A, Berrino F. Duration of SARS-CoV-2 Culturable Virus Shedding in Children by Vaccination Status. JAMA Pediatr. 2024;178(4):420-421. doi:10.1001/jamapediatrics.2023.6604
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Erdogan MA, Gurbuz O, Bozkurt MF, Erbas O. Prenatal Exposure to COVID-19 mRNA Vaccine BNT162b2 Induces Autism-Like Behaviors in Male Neonatal Rats: Insights into WNT and BDNF Signaling Perturbations. Neurochem Res. 2024;49(4):1034-1048. doi:10.1007/s11064-023-04089-2
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Tan JZ, Zhang DZ, Sundararaghavan S, et al. Chest pain attendances to a Paediatric Emergency Department pre- and post-COVID-19 vaccination. Transl Pediatr. 2023;12(11):2010-2019. doi:10.21037/tp-23-230
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Alghamdi Y, Abdulghani F, Huwait HF, Abdulghani M, Samarkandy SJ. An Unusual Presentation of Erythema Multiforme Following the Administration of Pfizer-BioNTech COVID-19 mRNA Vaccine in a Pediatric Patient. Cureus. 2024;16(4):e58450. Published 2024 Apr 17. doi:10.7759/cureus.58450
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CDC Study Confirms mRNA Jab-Injected Children Without Prior SARS-CoV-2 Infection 159% More Likely to Be Infected, 257% More Likely to Develop Symptomatic COVID-19 Compared to Unvaccinated Children Without Prior Infection: Oxford Academic’s Journal ‘Pediatric Infectious Diseases Society’
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Feldstein LR, Ruffin J, Wiegand R, et al. Protection From COVID-19 Vaccination and Prior SARS-CoV-2 Infection Among Children Aged 6 Months-4 Years, United States, September 2022-April 2023. J Pediatric Infect Dis Soc. 2025;14(1):piae121. doi:10.1093/jpids/piae121
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Considerando que las inyecciones basadas en ADN/ARN se han asociado con riesgos relacionados con el cáncer, incluida la presencia de proteínas de pico que pueden favorecer la supervivencia de las células cancerosas, la contaminación con secuencias SV40 vinculadas al cáncer, la estimulación del crecimiento tumoral y aumentos significativos en los diagnósticos y muertes por cáncer tras las campañas de vacunación masiva, lo que plantea graves preocupaciones sobre su seguridad y sus efectos a largo plazo.
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Cancer
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Zhang S, El-Deiry WS. SARS-CoV-2 spike S2 subunit inhibits p53 activation of p21(WAF1), TRAIL Death Receptor DR5, and MDM2 proteins in cancer cells. bioRxiv. Published online April 15, 2024. doi:10.1101/2024.04.12.589252.
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Raoult D. Confirmation of the presence of vaccine DNA in the Pfizer anti-COVID-19 vaccine. HAL Preprint. 2024. Available at: https://hal.science/hal-04778576v1.
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Rubio-Casillas A, Cowley D, Raszek M, Uversky VN, Redwan EM. Review: N1-methyl-pseudouridine (m1Ψ): Friend or foe of cancer? [published correction appears in Int J Biol Macromol. 2024 Jun;270(Pt 2):132447. doi: 10.1016/j.ijbiomac.2024.132447.]. Int J Biol Macromol. 2024;267(Pt 1):131427. doi:10.1016/j.ijbiomac.2024.131427
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Gibo M, Kojima S, Fujisawa A, Kikuchi T, Fukushima M. Increased Age-Adjusted Cancer Mortality After the Third mRNA-Lipid Nanoparticle Vaccine Dose During the COVID-19 Pandemic in Japan [retracted in: Cureus. 2024 Jun 26;16(6):r143. doi: 10.7759/cureus.r143.]. Cureus. 2024;16(4):e57860. Published 2024 Apr 8. doi:10.7759/cureus.57860
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BNT162b2 Vaccine 6x More Likely in dMMR Colon Cancer Patients: Journal ‘Cureus’
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Akkus E, Karaoglan B, Akyol C, et al. Types and Rates of COVID-19 Vaccination in Patients With Newly Diagnosed Microsatellite Stable and Instable Non-Metastatic Colon Cancer. Cureus. 2024;16(6):e61780. Published 2024 Jun 6. doi:10.7759/cureus.61780
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Nishizawa A, Kawakami M, Kitahara Y. Case report: A case of metastatic BRAFV600-mutated melanoma with heart failure treated with immune checkpoint inhibitors and BRAF/MEK inhibitors. Front Oncol. 2024;14:1366532. Published 2024 Mar 11. doi:10.3389/fonc.2024.1366532
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Valdes Angues R, Perea Bustos Y. SARS-CoV-2 Vaccination and the Multi-Hit Hypothesis of Oncogenesis. Cureus. 2023;15(12):e50703. Published 2023 Dec 17. doi:10.7759/cureus.50703
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Hitzenbichler F, Weber M, Salzberger B. Infection image: reoccurrence of Kaposi`s sarcoma after SARS-CoV-2 mRNA vaccination in an HIV-infected patient. Infection. 2024;52(1):283-284. doi:10.1007/s15010-023-02121-9
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Mitoma T, Maki J, Ooba H, Ogawa C, Masuyama H, Tabuchi T. Association of Regular Cervical Cancer Screening with Socioeconomic, COVID-19 Infection and Vaccine Status Among Japanese Population: Cohort Observational Study. Int J Gen Med. 2024;17:541-551. Published 2024 Feb 13. doi:10.2147/IJGM.S453675
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Considerando que las inyecciones basadas en ADN/ARN se han relacionado con una variedad de efectos neurológicos graves, incluido el síndrome de Guillain-Barré, convulsiones, inflamación cerebral autoinmune, enfermedades neuromusculares y mayores riesgos de trastornos neurológicos como parálisis de Bell y encefalitis, lo que genera preocupaciones críticas sobre su impacto en el sistema nervioso y la salud general del cerebro.
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Neurological Effects
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Guillain-Barré syndrome
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Jeong YD, Park S, Lee S, et al. Global burden of vaccine-associated Guillain-Barré syndrome over 170 countries from 1967 to 2023. Sci Rep. 2024;14(1):24561. Published 2024 Oct 19. doi:10.1038/s41598-024-74729-2
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Morciano C, Spila Alegiani S, Menniti Ippolito F, et al. Post-marketing active surveillance of Guillain Barré Syndrome following COVID-19 vaccination in persons aged ≥12 years in Italy: A multi-database self-controlled case series study. PLoS One. 2024;19(1):e0290879. Published 2024 Jan 19. doi:10.1371/journal.pone.0290879
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Kyo C, Kobayashi T, Iwama S, et al. A case of hypophysitis after COVID-19 vaccination with a detection of anti-pituitary antibody, with review of literature. Endocr J. 2024;71(8):799-807. doi:10.1507/endocrj.EJ24-0061
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Coviello A, Iacovazzo C, Vargas M, et al. A Death for Guillain-Barrè Syndrome After Receiving a COVID-19 Vaccine: A Case Report. Clin Med Insights Case Rep. 2024;17:11795476241274692. Published 2024 Oct 5. doi:10.1177/11795476241274692
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Seizures
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COVID-19 Jab Plays ‘Causal Role’ in Seizure Deaths: Journal ‘Academic Forensic Pathology’
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Prahlow JA. Deaths Related to New-Onset Seizures After Vaccination. Acad Forensic Pathol. Published online November 24, 2024. doi:10.1177/19253621241297029
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Temporal Seizure Following Second Jab: ‘Archives of Clinical Neuropsychology’
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Di Tella M, Nahi YC, Paglia G, Geminiani GC. A Case Report of Autoimmune Encephalitis after Anti-SARS-CoV-2 Vaccination: The Role of Cognitive Impairments in the Diagnostic Process. Arch Clin Neuropsychol. 2024;39(6):775-781. doi:10.1093/arclin/acae031
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‘Deaths Related to New-Onset Seizures After Vaccination’: Journal ‘Academic Forensic Pathology’
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Prahlow JA. Deaths Related to New-Onset Seizures After Vaccination. Acad Forensic Pathol. Published online November 24, 2024. doi:10.1177/19253621241297029
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Brain/Neurological
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Di Tella M, Nahi YC, Paglia G, Geminiani GC. A Case Report of Autoimmune Encephalitis after Anti-SARS-CoV-2 Vaccination: The Role of Cognitive Impairments in the Diagnostic Process. Arch Clin Neuropsychol. 2024;39(6):775-781. doi:10.1093/arclin/acae031
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Faksova K, Walsh D, Jiang Y, et al. COVID-19 vaccines and adverse events of special interest: A multinational Global Vaccine Data Network (GVDN) cohort study of 99 million vaccinated individuals. Vaccine. 2024;42(9):2200-2211. doi:10.1016/j.vaccine.2024.01.100
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Erdogan MA, Gurbuz O, Bozkurt MF, Erbas O. Prenatal Exposure to COVID-19 mRNA Vaccine BNT162b2 Induces Autism-Like Behaviors in Male Neonatal Rats: Insights into WNT and BDNF Signaling Perturbations. Neurochem Res. 2024;49(4):1034-1048. doi:10.1007/s11064-023-04089-2
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Al-Hawamdeh MI, Abu-Huwaij R, Astiti TA, Al-Debe’e AK, Abazeed OJ, Raees MA. Association between COVID-19 vaccines and development of chronic morbidities: a cross-sectional study in the Jordanian population. Curr Med Res Opin. 2024;40(3):537-543. doi:10.1080/03007995.2024.2303417
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Katz J, Sayman E, Gao H. The increased odds ratio for Bell’s palsy following COVID-19 infection or vaccination. Oral Dis. 2024;30(6):4054-4055. doi:10.1111/odi.14860
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Katz J, Sayman E, Gao H. The increased odds ratio for Bell’s palsy following COVID-19 infection or vaccination. Oral Dis. 2024;30(6):4054-4055. doi:10.1111/odi.14860
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Pilotto A, Catania M, Mattioli I, et al. Increased risk of functional neurological disorders following SARS-CoV-2 vaccination. Eur J Neurol. 2024;31(4):e16191. doi:10.1111/ene.16191
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Tayebi A, Samimisedeh P, Jafari Afshar E, et al. Neuromuscular diseases associated with COVID-19 vaccines: a systematic review and pooled analysis of 258 patients. BMC Neurol. 2023;23(1):437. Published 2023 Dec 11. doi:10.1186/s12883-023-03486-y
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Rogers C, Thorp JA, Cosgrove K, McCullough PA. COVID-19 Vaccines: A Risk Factor for Cerebral Thrombotic Syndromes. Int J Innov Res Med Sci. 2024;9(11). doi:10.23958/ijirms/vol09-i11/1982.
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Taylor ZC, Nunna RS, Tran A, et al. COVID-19 Vaccine Related Cervical Radiculitis and Parsonage-Turner Syndrome: Case Report and Review of the Literature. Turk Neurosurg. 2024;34(2):367-375. doi:10.5137/1019-5149.JTN.44533-23.2
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Sicard M, Shor N, Davy V, et al. Cerebellar encephalitis and peripheral neuropathy with an atypical clinical and neuroimaging signature following Covid-19 vaccine: a report of two cases. J Neurol. 2024;271(7):4680-4684. doi:10.1007/s00415-024-12390-5
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Roh JH, Jung I, Suh Y, Kim MH. A potential association between COVID-19 vaccination and development of Alzheimer’s disease. QJM. 2024;117(10):709-716. doi:10.1093/qjmed/hcae103
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Other nervous system effects
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Dorajoo SR, Tan HX, Teo CHD, et al. Nationwide safety surveillance of COVID-19 mRNA vaccines following primary series and first booster vaccination in Singapore. Vaccine X. 2023;15:100419. Published 2023 Dec 2. doi:10.1016/j.jvacx.2023.100419
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Considerando que las inyecciones basadas en ADN/ARN se han asociado con trastornos del sistema linfático, incluidas la linfadenopatía inducida por vacunas y anomalías de los ganglios linfáticos axilares, lo que genera inquietudes sobre sus efectos sobre la función del sistema inmunológico y la salud linfática.
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Lymph
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‘COVID-19 Vaccine-Associated Lymphadenopathy’: Journal ‘Le Infezioni in Medicina’
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Ciliberti V, Maffei E, Giudice V, Ciancia G, Zeppa P, Caputo A. COVID-19 vaccine-associated lymphadenopathy: a review. Infez Med. 2024;32(2):119-130. Published 2024 Jun 1. doi:10.53854/liim-3202-1
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Vaccine-Associated Axillary Lymphadenopathy With a Focus on COVID-19 Vaccines: Journal ‘RöFo’
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Wilpert C, Wenkel E, Baltzer PAT, et al. Vaccine-associated axillary lymphadenopathy with a focus on COVID-19 vaccines. Impfassoziierte axilläre Lymphadenopathie mit Fokus auf COVID-19-Impfstoffe. Rofo. Published online June 21, 2024. doi:10.1055/a-2328-7536
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Ziolkowska P, Salyga A, Joks M, Ruchala M, Czepczynski R. COVID-19 vaccination-related [18F]FDG-avid lymph node in a patient with marginal zone B-cell lymphoma. Nucl Med Rev Cent East Eur. 2023;26(0):52-53. doi:10.5603/NMR.a2023.0004
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Considerando que las inyecciones basadas en ADN/ARN se han relacionado con un aumento de los trastornos psicológicos, incluida la ansiedad, la depresión y la psicosis de nueva aparición, lo que agrava los problemas de salud mental ya agudizados por los confinamientos y los cierres de escuelas relacionados con la pandemia.
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Psychological Disorders
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Pradhan DD, Jena P, Misra S, Meher BK, Das L. Impact of Covid-19 on Psychosocial Well-Being of School-Going Children: A Cross-Sectional Study. Cureus. 2024;16(6):e62561. Published 2024 Jun 17. doi:10.7759/cureus.62561
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Increased Psychiatric Disorders Following COVID Jab: Nature’s ‘Molecular Psychiatry’ Journal
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Kim HJ, Kim MH, Choi MG, Chun EM. Psychiatric adverse events following COVID-19 vaccination: a population-based cohort study in Seoul, South Korea. Mol Psychiatry. 2024;29(11):3635-3643. doi:10.1038/s41380-024-02627-0
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‘New-Onset Psychosis Following COVID-19 Vaccination’: Journal ‘Frontiers in Psychology’
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Lazareva M, Renemane L, Vrublevska J, Rancans E. New-onset psychosis following COVID-19 vaccination: a systematic review. Front Psychiatry. 2024;15:1360338. Published 2024 Apr 12. doi:10.3389/fpsyt.2024.1360338
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Roh JH, Jung I, Suh Y, Kim MH. A potential association between COVID-19 vaccination and development of Alzheimer’s disease. QJM. 2024;117(10):709-716. doi:10.1093/qjmed/hcae103
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Considerando que las inyecciones basadas en ADN/ARN se han asociado con la aparición de enfermedades relacionadas con la diabetes, incluida la diabetes tipo 1 y tipo 2 de nueva aparición, la hiperglucemia transitoria y la diabetes insípida central, lo que genera inquietud sobre su impacto en la salud metabólica y la regulación glucémica.
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Diabetes
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‘COVID-19 RNA-Based Vaccines Might Cause New Onset’ Diabetes: ‘Journal of Medical Cases’
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Aburisheh KH, Enabi HMK, Alodah NA, et al. New Onset of Type 1 Diabetes Mellitus Post-COVID-19 Vaccine. J Med Cases. 2024;15(12):367-370. doi:10.14740/jmc4307
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Mazzeo P, Ceccato F, Manara R, Mazzon C, Barbot M. Transient Central Diabetes Insipidus (Arginine Vasopressin Deficiency) Following SARS-CoV-2 Vaccination: A Case Report and Literature Review. Endocr Metab Immune Disord Drug Targets. 2024;24(15):1856-1864. doi:10.2174/0118715303286560231124115052
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Takahashi H, Eguchi J, Watanabe M, Nakayama M, Wada J. Reduced Immunogenicity of COVID-19 Vaccine in Obese Patients with Type 2 Diabetes: A Cross-Sectional Study. Acta Med Okayama. 2024;78(2):185-191. doi:10.18926/AMO/66927
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Okon-Umoren A, Yaphe S, Smith A, Passalacqua KD, Budzynska K. Transient Hyperglycemia in a Patient With Type 2 Diabetes After COVID-19 Messenger RNA Vaccination: A Case Report. Cureus. 2024;16(7):e63983. Published 2024 Jul 6. doi:10.7759/cureus.63983\
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‘Type 1 Diabetes Mellitus Following COVID-19 Vaccination’: Journal ‘Diabetology International’
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Mochizuki S, Miura J, Ucida K, et al. Type 1 diabetes mellitus following COVID-19 vaccination: a report of two cases and review of literature. Diabetol Int. 2024;15(3):577-582. Published 2024 Feb 29. doi:10.1007/s13340-024-00695-9
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Considerando que las inyecciones basadas en ADN/ARN se han relacionado con una incidencia preocupante de trastornos del sueño, lo que plantea preocupaciones de salud adicionales sobre su potencial NE
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Sleep Disorders
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Al Katatbeh M, Al-Mashakbeh Y, Freihat H, et al. Incidence of narcolepsy symptoms after taking COVID-19 vaccines: a Jordanian cross-sectional study. Clin Exp Vaccine Res. 2024;13(3):218-224. doi:10.7774/cevr.2024.13.3.218
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Increased Psychiatric Disorders Following COVID Jab: Nature’s ‘Molecular Psychiatry’ Journal
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Kim HJ, Kim MH, Choi MG, Chun EM. Psychiatric adverse events following COVID-19 vaccination: a population-based cohort study in Seoul, South Korea. Mol Psychiatry. 2024;29(11):3635-3643. doi:10.1038/s41380-024-02627-0
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Considerando que las inyecciones basadas en ADN/ARN se han asociado con la pérdida de cabello, lo que aumenta las preocupaciones sobre los posibles efectos secundarios dermatológicos y sistémicos.
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Hair Loss
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Hair Loss Following COVID-19 Jab: Journal ‘Expert Opinion on Therapeutic Targets’
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Fu S, Song X. The clinical and immunological features of alopecia areata following SARS-CoV-2 infection or COVID-19 vaccines. Expert Opin Ther Targets. 2024;28(4):273-282. doi:10.1080/14728222.2024.2344696
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Considerando que las inyecciones basadas en ADN/ARN se han asociado con complicaciones relacionadas con los nervios, incluida la parálisis motora del nervio radial y la neuralgia del trigémino, lo que genera inquietud sobre sus efectos sobre el sistema nervioso periférico.
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Nerve
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Radlberger RF, Trinka E, Leis S. Radial nerve motor palsy after COVID vaccination: A case report. J Family Med Prim Care. 2023;12(11):2967-2969. doi:10.4103/jfmpc.jfmpc_2437_22
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Chrostowski K, Piasecki M, Bielewicz J. Trigeminal neuralgia occurring after the third dose of Pfizer BioNTech COVID-19 vaccine. Complication or coincidence? An illustrative case report and literature review. Cent Eur J Immunol. 2023;48(1):75-80. doi:10.5114/ceji.2023.125309
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Considerando que las inyecciones basadas en ADN/ARN se han relacionado con una amplia gama de eventos adversos dermatológicos y relacionados con la piel, incluida la aparición y exacerbación de psoriasis, vitíligo, dermatitis grave, alopecia, necrólisis epidérmica tóxica y otras afecciones cutáneas inflamatorias y autoinmunes, lo que genera serias preocupaciones sobre su impacto en la salud dermatológica.
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Skin/Dermatological
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Arifin ANF, Hengky A, Widjaja M, Wijaya L. New-Onset and Exacerbation of Psoriasis following COVID-19 Vaccination: A Systematic Review of Case Reports and Case Series. Indian J Dermatol. 2023;68(6):724. doi:10.4103/ijd.ijd_833_22
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Skin Condition Pityriasis Rosea ‘Following COVID-19 Vaccinations’: ‘Oman Medical Journal’
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Al Hatmi I, Al Maqbali H, Al Waily A, Al Khalili A, Qureshi A. Pityriasis Rosea and Pityriasis Rosea-like Eruption Following COVID-19 Vaccinations: Case Series from Oman. Oman Med J. 2023;38(6):e579. Published 2023 Nov 30. doi:10.5001/omj.2024.01
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Nishizawa A, Kawakami M, Kitahara Y. Case report: A case of metastatic BRAFV600-mutated melanoma with heart failure treated with immune checkpoint inhibitors and BRAF/MEK inhibitors. Front Oncol. 2024;14:1366532. Published 2024 Mar 11. doi:10.3389/fonc.2024.1366532
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Chronic Skin Autoimmune Disease Vitiligo Following COVID-19 Vaccination: ‘Journal of Dermatology’
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Tsai TF, Ng CY. COVID-19 vaccine-associated vitiligo: A cross-sectional study in a tertiary referral center and systematic review. J Dermatol. 2023;50(8):982-989. doi:10.1111/1346-8138.16799
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Katsube K, Nagai T, Watanabe T. Recurrent Skin Rash, Epigastralgia, and Arthralgia After SARS-CoV-2 mRNA Immunization and Breakthrough Infection. Gastroenterology. 2024;167(2):e5-e8. doi:10.1053/j.gastro.2023.12.024
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Patruno C, Fabbrocini G, Napolitano M. Severe symptomatic late onset dermographism after mRNA COVID-19 vaccine. Ital J Dermatol Venerol. 2024;159(1):60-61. doi:10.23736/S2784-8671.23.07454-6
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Huang T, Lv Y, Wang W, et al. Case Report: Fecal Microbiota Transplantation for the Treatment of Generalized Eczema Occurring After COVID-19 Vaccination. Clin Cosmet Investig Dermatol. 2024;17:229-235. Published 2024 Jan 26. doi:10.2147/CCID.S443542
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Zoli A, Peluso G, Grimaldi M, De Simone C, D’Agostino MA, Ortolan A. New onset of guttate psoriasis, Hallopeau’s continuous acrodermatitis, and psoriatic arthritis after COVID-19 vaccine. Scand J Rheumatol. 2024;53(5):361-362. doi:10.1080/03009742.2024.2316998
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Bolla E, Fragoulis GE, Iliopoulos A. New-Onset MDA-5 Dermatomyositis in a Patient Following COVID-19 Vaccination: A Case Report. Mediterr J Rheumatol. 2024;35(1):179-183. Published 2024 Mar 31. doi:10.31138/mjr.280124.nom
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‘COVID-19 Vaccine-Induced Erysipelas-Like Eruption’: ‘Indian Journal of Dermatology’
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Behera B, Thakur V, Sethy M, Ayyanar P, Garg S. COVID-19 Vaccine-Induced Erysipelas-Like Eruption. Indian J Dermatol. 2024;69(2):204. doi:10.4103/ijd.ijd_21_24
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‘Toxic Epidermal Necrolysis After COVID-19 Vaccination’: ‘Journal of Acute Medicine’
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Wali S, Gutte S, Pandey G, Kumar A, Gurjar M, Chahar JS. Toxic Epidermal Necrolysis After COVID-19 Vaccination: A Case Report and Review of Literature. J Acute Med. 2024;14(2):94-97. doi:10.6705/j.jacme.202406_14(2).0005
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Kim JS, Jeong CY, Lee GJ, Yeom SW, Nam KH. Risk of vitiligo in patients with SARS-CoV-2 vaccination or infection: a nationwide cohort study. Eur J Dermatol. 2024;34(2):150-157. doi:10.1684/ejd.2024.4646
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Zhu Y, Ouyang X, Zhang D, et al. Alopecia areata following COVID-19 vaccine: a systematic review. Eur J Med Res. 2024;29(1):356. Published 2024 Jul 5. doi:10.1186/s40001-024-01956-8
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Seol JE, Jang SH, Yun HW, Ahn SW, Kim H. A case of cutaneous sarcoidosis with pulmonary involvement after SARS-CoV-2 mRNA vaccination. JAAD Case Rep. 2024;50:47-50. Published 2024 May 28. doi:10.1016/j.jdcr.2024.05.019
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‘Erythema Multiforme-Like Papules After COVID Vaccine Administration’: ‘Dermatology Online Journal’
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Daly TJ, Smith GT, McClain SA. Erythema multiforme-like papules after COVID vaccine administration. Dermatol Online J. 2024;30(3):10.5070/D330363868. Published 2024 Jun 15. doi:10.5070/D330363868
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‘COVID-19-Vaccination-Induced Localized Lichen Planus’: Journal ‘Cureus’
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Al Dhafiri M. COVID-19-Vaccination-Induced Localized Lichen Planus Successfully Treated With Phototherapy. Cureus. 2024;16(8):e66907. Published 2024 Aug 14. doi:10.7759/cureus.66907
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‘COVID-19 Vaccination-Linked Granuloma Annulare’: Journal ‘Skin Health and Disease’
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McIntyre E, Lamb P, Fung MA, Kiuru M, Chan LS. COVID-19 vaccination-linked granuloma annulare in two patients. Skin Health Dis. 2024;4(5):e412. Published 2024 Jul 24. doi:10.1002/ski2.412
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Beaineh P, El-Bsat A, Hafez B, et al. COVID-19 and COVID-19 Vaccine-Related Skin Ulcerations in the Lower Extremities: A Case Report and Literature Review. Int J Low Extrem Wounds. Published online October 29, 2024. doi:10.1177/15347346241275785
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Considerando que las inyecciones basadas en ADN/ARN se han asociado con complicaciones oculares graves, entre ellas inflamación ocular, deficiencias en el suministro de sangre, ceguera, síndrome del punto blanco y púrpura de Henoch-Schönlein, lo que genera inquietudes sobre su seguridad e impacto en la visión y la salud ocular.
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Eye/Ocular
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Eye Inflammation, Blood Supply Deficiency Following COVID Jab: ‘Korean Journal of Ophthalmology’
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Seo EJ, Jung MS, Lee K, Kim KT, Choi MY. Ischemic and Inflammatory Ocular Adverse Events Following Different Types of Vaccination for COVID-19 and Their Incidence Analysis. Korean J Ophthalmol. 2024;38(3):203-211. doi:10.3341/kjo.2023.0090
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Blindness in Both Eyes Following COVID-19 Vaccination: ‘European Journal of Ophthalmology’
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Matri KE, Werda S, Chebbi Z, et al. Bilateral central retinal vein occlusion following COVID-19 vaccination: Cause or coincidence?. Eur J Ophthalmol. 2024;34(3):NP78-NP81. doi:10.1177/11206721241229109
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Matsuo T, Iguchi D. Rare Combination of Abducens Nerve Palsy and Optic Neuritis on the Same Side: Case Report and Review of 8 Patients in Literature. J Investig Med High Impact Case Rep. 2024;12:23247096231225873. doi:10.1177/23247096231225873
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Kashyap H, Manoharan A, Mahendradas P, Agarwal A, Majumder PD. A COVID-19 perspective of multiple evanescent white dot syndrome (MEWDS). Indian J Ophthalmol. 2024;72(5):620-625. doi:10.4103/IJO.IJO_2029_23
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Tetsumoto R, Matsumiya W, Sotani R, Kusuhara S, Nakamura M. Acute Noninfectious Anterior Ocular Inflammation Following Ranibizumab Biosimilar Intravitreal Injection in a Patient With Recent COVID-19 Vaccination. Cureus. 2024;16(5):e60356. Published 2024 May 15. doi:10.7759/cureus.60356
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Zeng Y, Du Z, Shao C, Zhao M. Comprehensive insights into COVID-19 vaccine-associated multiple evanescent white dot syndrome (MEWDS): A systematic analysis of reported cases. Hum Vaccin Immunother. 2024;20(1):2350812. doi:10.1080/21645515.2024.2350812
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Lee MO, Yoo SJ. Henoch-Schönlein purpura following mRNA COVID-19 vaccination: a case report. Clin Exp Vaccine Res. 2024;13(2):166-170. doi:10.7774/cevr.2024.13.2.166
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Considerando que las inyecciones basadas en ADN/ARN se han relacionado con complicaciones ortopédicas y espinales, incluidas lesiones de la médula espinal, acumulación de sangre fuera de los vasos espinales, radiculitis cervical y síndrome de Parsonage-Turner, lo que genera preocupaciones importantes sobre su impacto en la salud musculoesquelética y neurológica.
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Orthopedic/Spine
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Rezvani M, Mahmoodkhani M, Sourani A, et al. Treatment refractory acute necrotizing myelitis after COVID-19 vaccine injection: a case report. Ann Med Surg (Lond). 2024;86(2):1185-1190. Published 2024 Jan 3. doi:10.1097/MS9.0000000000001662
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Rezvani M, Sabouri M, Aminmansour B, et al. Spontaneous spinal epidural haematoma following COVID-19 vaccination: a case report. Ann Med Surg (Lond). 2023;86(1):612-619. Published 2023 Dec 8. doi:10.1097/MS9.0000000000001604
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Taylor ZC, Nunna RS, Tran A, et al. COVID-19 Vaccine Related Cervical Radiculitis and Parsonage-Turner Syndrome: Case Report and Review of the Literature. Turk Neurosurg. 2024;34(2):367-375. doi:10.5137/1019-5149.JTN.44533-23.2
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Considerando que las inyecciones basadas en ADN/ARN se han asociado con un mayor riesgo de infecciones por herpes, incluida la reactivación del herpes zóster, herpes hemorrágico similar a la vasculitis y tasas de incidencia significativamente más altas en comparación con las personas no vacunadas, lo que genera inquietud sobre sus efectos sobre la reactivación viral y la función del sistema inmunológico.
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Herpes
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Herpes After 3rd COVID-19 Vaccine in Cancer Patients: Journal ‘Clinical and Experimental Medicine’
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Nelli F, Fabbri A, Virtuoso A, et al. Herpes zoster after the third dose of SARS-CoV-2 mRNA-BNT162b2 vaccine in actively treated cancer patients: a prospective study. Clin Exp Med. 2024;24(1):13. Published 2024 Jan 20. doi:10.1007/s10238-023-01263-2
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Leeyaphan C, Jirawattanadon P, Bunyaratavej S, et al. Herpes Zoster after COVID-19 Infection or Vaccination: A Prospective Cohort Study in a Tertiary Dermatology Clinic. Dermatol Res Pract. 2023;2023:2206498. Published 2023 Dec 31. doi:10.1155/2023/2206498
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Cozma EC, Banciu LM, Soare C, Găman MA, Voiculescu VM. Vasculitis-Like Hemorrhagic Herpes Zoster and HIV Infections: An Intricate Association. Cureus. 2023;15(12):e50609. Published 2023 Dec 15. doi:10.7759/cureus.50609
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‘Herpes Zoster Reactivation After COVID-19 Vaccine’: Journal ‘Anesthesiology & Pain Medicine’
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Chrona E, Tsoumani M, Batistaki C. Herpes Zoster Reactivation After COVID-19 Vaccine with Focus on Postherpetic Neuralgia Prevention: A Case Series. Anesth Pain Med. 2023;13(6):e131366. Published 2023 Dec 10. doi:10.5812/aapm-131366
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Considerando que las inyecciones basadas en ADN/ARN pueden influir en la patogenia de la hepatitis autoinmune, lo que genera inquietud sobre su potencial para desencadenar o exacerbar enfermedades hepáticas autoinmunes.
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Hepatitis
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Kuwano A, Nagasawa S, Koga Y, et al. Diagnostic features of autoimmune hepatitis in SARS‑CoV‑2‑vaccinated vs. unvaccinated individuals. Exp Ther Med. 2024;28(3):337. Published 2024 Jun 26. doi:10.3892/etm.2024.12626
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Considerando que las inyecciones basadas en ADN/ARN se han asociado con reacciones de lepra inducidas, lo que genera inquietud sobre su potencial para desencadenar o exacerbar afecciones dermatológicas y sistémicas raras y graves.
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Leprosy
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‘COVID Vaccination Induced’ Leprosy Reactions: Journal ‘Indian Dermatology Online Journal’
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Kumari S, Verma GK, Negi AK, Sharma A. Lepra Reactions: Mimickers and Mirror to Unmask Complex Cases of Leprosy. Indian Dermatol Online J. 2023;15(3):500-503. Published 2023 Nov 24. doi:10.4103/idoj.idoj_294_23
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Considerando que las inyecciones basadas en ADN/ARN se han relacionado con complicaciones hepáticas, incluido el síndrome de Budd-Chiari, lo que genera preocupación sobre sus posibles efectos adversos sobre la salud hepática y los sistemas vasculares.
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Liver
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Lipszyc L, Triquet L, Giguet B, Lambotte O, Babai S. Budd-Chiari syndrome after BNT162b2 mRNA vaccination: two case reports. Eur J Hosp Pharm. Published online July 22, 2024. doi:10.1136/ejhpharm-2023-003997
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Considerando que las inyecciones basadas en ADN/ARN pueden provocar el desprendimiento de nanopartículas lipídicas y proteínas de pico a través de transfusiones de sangre, leche materna, trasplante de órganos, exhalación y contacto piel con piel, lo que genera serias preocupaciones sobre la exposición no intencionada y la transmisión a otras personas.
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Shedding
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Halma MTJ, Rose J, McCullough PA. Inadvertent Exposure to Pharmacologically Designed Lipid Nanoparticles Via Bodily Fluids: Biologic Plausibility and Potential Consequences. Preprints. Published online February 22, 2024. doi:10.20944/preprints202402.1267.v1.
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Peters SE, Newman J, Ray H, et al. Menstrual Abnormalities Strongly Associated with Proximity to COVID-19 Vaccinated Individuals. Int J Vaccine Theory Pract Res. 2024;3(2):1435-1452. doi:10.56098/tp99wn15.
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Considerando que las inyecciones basadas en ADN/ARN se han vinculado a importantes problemas reproductivos y de fertilidad, incluidas irregularidades menstruales, mayores tasas de abortos espontáneos, trastornos funcionales de la lactancia, riesgos de exposición fetal e impactos negativos en la calidad del esperma, lo que genera importantes preocupaciones sobre sus efectos en la salud reproductiva y los resultados.
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Reproductive/Fertility
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Menstrual
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Rahimi Mansour F, Keyvanfar A, Najafiarab H, Hooshmand Chayijan S, Farzaneh F, Mortezaei G. Menstrual Cycle Disturbances after COVID-19 Vaccination: A Cross-Sectional Study. Int J Fertil Steril. 2024;18(3):201-206. Published 2024 Jun 9. doi:10.22074/ijfs.2024.2016339.1579
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AlRawi HZ, AlQurashi A, AlDahan D, et al. Association between receiving Covid-19 vaccine and menstrual cycle patterns among childbearing women: A cross-sectional study. Health Sci Rep. 2024;7(5):e1934. Published 2024 May 9. doi:10.1002/hsr2.1934
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45% of Women Report Postvaccine Menstrual Cycle Changes: Journal of Family and Community Medicine
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Latif R, Aldossary DA, Aljabari NA, et al. Prevalence of menstrual irregularities after coronavirus disease 2019 vaccination: A cross-sectional study in the Eastern Province, Saudi Arabia. J Family Community Med. 2024;31(1):71-78. doi:10.4103/jfcm.jfcm_115_23
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Aljehani AM, Banjar SA, Alawam HS, et al. The Relationship Between Menstrual Cycle Irregularities and COVID-19 Vaccination. Cureus. 2023;15(12):e49841. Published 2023 Dec 2. doi:10.7759/cureus.49841
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Tandon A, Kumar N, Aggarwal S, et al. Assessing Menstrual Changes Among Young Indian Females Post-SARS-CoV-2 Vaccination. Cureus. 2023;15(12):e50025. Published 2023 Dec 6. doi:10.7759/cureus.50025
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Arshad A, Usman M, Majeed Khan H, Rahman Z, Manzoor M, Gul B. Effect of COVID-19 vaccination on menstrual cycle irregularities among females: A cross-sectional study in Pakistan. Pak J Pharm Sci. 2024;37(1(Special)):215-222.
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‘Menstrual Changes in COVID-19 Vaccinated Women’: Journal ‘Preventive Medicine Reports’
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Homam Safiah M, Kalalib Al Ashabi K, Khalayli N, Hodaifa Y, Kudsi M. The prevalence of menstrual changes in COVID-19 vaccinated women: A cross-sectional study. Prev Med Rep. 2024;44:102804. Published 2024 Jun 24. doi:10.1016/j.pmedr.2024.102804
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‘Prevalence of Menstrual Changes After COVID-19 Vaccination’: Journal ‘BMC Women’s Health’
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Al Shahrani A, Alhumaidan N, Alzelfawi L, et al. Prevalence of menstrual alterations following COVID-19 vaccination: systematic review & meta-analysis. BMC Womens Health. 2024;24(1):523. Published 2024 Sep 19. doi:10.1186/s12905-024-03349-9
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Peters SE, Newman J, Ray H, et al. Menstrual Abnormalities Strongly Associated with Proximity to COVID-19 Vaccinated Individuals. Int J Vaccine Theory Pract Res. 2024;3(2):1435-1452. doi:10.56098/tp99wn15.
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Maternal
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Amer AA, Amer SA, Badokhon A, et al. Exploring COVID-19 vaccine adverse events among pregnant women: a cross-sectional study, 2022. Ther Adv Vaccines Immunother. 2024;12:25151355241285594. Published 2024 Oct 5. doi:10.1177/25151355241285594
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Thorp JA, Benavides A, Thorp MM, McDyer DC, Biss KO, Threet JA, McCullough PA. Are COVID-19 Vaccines in Pregnancy as Safe and Effective as the U.S. Government, Medical Organizations, and Pharmaceutical Industry Claim? Part I. Preprints. Published online June 29, 2024. doi:10.20944/preprints202406.2062.v1.
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Miller ND, Goren Gepstein N, Cohen D, et al. Does the SARS-CoV-2 mRNA vaccine and its serum IgG levels affect fertility treatments and obstetric outcomes? An observational cohort study. Clin Exp Med. 2024;24(1):81. Published 2024 Apr 23. doi:10.1007/s10238-024-01345-9
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Kang D, Choi A, Park S, Choe SA, Shin JY. Safety of COVID-19 Vaccination During Pregnancy and Lactation: A VigiBase Analysis. J Korean Med Sci. 2024;39(1):e3. Published 2024 Jan 8. doi:10.3346/jkms.2024.39.e3
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Zhong C, Cohen K, Lin X, Schiller E, Sharma S, Hanna N. COVID-19 Vaccine mRNA Biodistribution: Maternal and Fetal Exposure Risks. Am J Reprod Immunol. 2024;92(4):e13934. doi:10.1111/aji.13934
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Kang D, Choi A, Park S, Choe SA, Shin JY. Safety of COVID-19 Vaccination During Pregnancy and Lactation: A VigiBase Analysis. J Korean Med Sci. 2024;39(1):e3. Published 2024 Jan 8. doi:10.3346/jkms.2024.39.e3
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Trostle ME, Limaye MA, Avtushka V, Lighter JL, Penfield CA, Roman AS. COVID-19 vaccination in pregnancy: early experience from a single institution. Am J Obstet Gynecol MFM. 2021;3(6):100464. doi:10.1016/j.ajogmf.2021.100464
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Druškovič M, Lučovnik M, Mesarič VA, et al. Immune Response to SARS-CoV-2 in Vaccine-naive Pregnant Women: Assessment of IgG and IgA Antibody Profile at Delivery and 42 Days Postpartum. J Immunol. 2024;213(9):1371-1379. doi:10.4049/jimmunol.2400055
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Miller ND, Goren Gepstein N, Cohen D, et al. Does the SARS-CoV-2 mRNA vaccine and its serum IgG levels affect fertility treatments and obstetric outcomes? An observational cohort study. Clin Exp Med. 2024;24(1):81. Published 2024 Apr 23. doi:10.1007/s10238-024-01345-9
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COVID-19 Vaccination Reduces Clinical Pregnancy Rates in Patients Undergoing IVF: Journal ‘Diseases’
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Milostić-Srb A, Srb N, Talapko J, et al. The Effect of COVID-19 and COVID-19 Vaccination on Assisted Human Reproduction Outcomes: A Systematic Review and Meta-Analysis. Diseases. 2024;12(9):201. Published 2024 Sep 3. doi:10.3390/diseases12090201
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Fetal
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Erdogan MA, Gurbuz O, Bozkurt MF, Erbas O. Prenatal Exposure to COVID-19 mRNA Vaccine BNT162b2 Induces Autism-Like Behaviors in Male Neonatal Rats: Insights into WNT and BDNF Signaling Perturbations. Neurochem Res. 2024;49(4):1034-1048. doi:10.1007/s11064-023-04089-2
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Zhong C, Cohen K, Lin X, Schiller E, Sharma S, Hanna N. COVID-19 Vaccine mRNA Biodistribution: Maternal and Fetal Exposure Risks. Am J Reprod Immunol. 2024;92(4):e13934. doi:10.1111/aji.13934
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Sperm
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‘Concern’ COVID-19 Vaccine Negatively Affects Sperm Quality: Journal ‘Reproduction & Fertility’
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Mungmunpuntipantip R, Wiwanitkit V. COVID-19 vaccine and its effect on sperm. Reprod Fertil. 2023;4(1):e220098. Published 2023 Jan 25. doi:10.1530/RAF-22-0098
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Considerando que las inyecciones basadas en ADN/ARN se han asociado con una amplia gama de trastornos del sistema inmunológico y autoinmunes, incluida la función inmunológica reducida, el lupus, la artritis reumatoide, la encefalitis autoinmune y la aparición o exacerbación de varias enfermedades autoinmunes, lo que genera preocupaciones críticas sobre su impacto en la regulación inmunológica y la salud sistémica.
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Immune System/Autoimmune
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Gelderloos AT, Verheul MK, Middelhof I, et al. Repeated COVID-19 mRNA vaccination results in IgG4 class switching and decreased NK cell activation by S1-specific antibodies in older adults. Immun Ageing. 2024;21(1):63. Published 2024 Sep 14. doi:10.1186/s12979-024-00466-9
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Vahedi M, Malek A, Saadat S, Tahghighi Sharabian F, Pourbadakhshan N. New Onset Systemic Lupus Erythematosus with Unusual Presentation and Multi-Organ Involvement after Covid-19 Vaccination in a Pediatric Patient: A Case Report. Iran J Kidney Dis. 2024;18(5):10.52547/rh64ar35. Published 2024 Oct 18. doi:10.52547/rh64ar35
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Fajloun Z, Tajer L, Khattar ZA, Sabatier JM. Unveiling the Role of SARS-CoV-2 or mRNA Vaccine Spike Protein in Macrophage Activation Syndrome (MAS). Infect Disord Drug Targets. Published online July 22, 2024. doi:10.2174/0118715265341206240722050403
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Chronic Skin Autoimmune Disease Vitiligo Following COVID-19 Vaccination: ‘Journal of Dermatology’
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Tsai TF, Ng CY. COVID-19 vaccine-associated vitiligo: A cross-sectional study in a tertiary referral center and systematic review. J Dermatol. 2023;50(8):982-989. doi:10.1111/1346-8138.16799
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Di Tella M, Nahi YC, Paglia G, Geminiani GC. A Case Report of Autoimmune Encephalitis after Anti-SARS-CoV-2 Vaccination: The Role of Cognitive Impairments in the Diagnostic Process. Arch Clin Neuropsychol. 2024;39(6):775-781. doi:10.1093/arclin/acae031
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Al-Hawamdeh MI, Abu-Huwaij R, Astiti TA, Al-Debe’e AK, Abazeed OJ, Raees MA. Association between COVID-19 vaccines and development of chronic morbidities: a cross-sectional study in the Jordanian population. Curr Med Res Opin. 2024;40(3):537-543. doi:10.1080/03007995.2024.2303417
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Al-Hawamdeh MI, Abu-Huwaij R, Astiti TA, Al-Debe’e AK, Abazeed OJ, Raees MA. Association between COVID-19 vaccines and development of chronic morbidities: a cross-sectional study in the Jordanian population. Curr Med Res Opin. 2024;40(3):537-543. doi:10.1080/03007995.2024.2303417
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Kim S, Bea S, Choe SA, Choi NK, Shin JY. Autoimmune disorders reported following COVID-19 vaccination: A disproportionality analysis using the WHO database. Eur J Clin Pharmacol. 2024;80(3):445-453. doi:10.1007/s00228-023-03618-w
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Rahmatika AS, Murtiastutik D, Hidayati AN, et al. Unusual presentation of secondary syphilis mimicking erythema multiforme in HIV positive patient: a case report. Pan Afr Med J. 2023;46:55. Published 2023 Oct 16. doi:10.11604/pamj.2023.46.55.41497
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Ammer-Herrmenau C, Hamm J, Neesse A. Autoimmune pancreatitis-New evidence for clinical management strategies. United European Gastroenterol J. 2024;12(3):279-280. doi:10.1002/ueg2.12537
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Di Tella M, Nahi YC, Paglia G, Geminiani GC. A Case Report of Autoimmune Encephalitis after Anti-SARS-CoV-2 Vaccination: The Role of Cognitive Impairments in the Diagnostic Process. Arch Clin Neuropsychol. 2024;39(6):775-781. doi:10.1093/arclin/acae031
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Peraita-Adrados R, Bravo-Quelle N. Autoimmune encephalitis mediated by postvaccination and infection of SARS-CoV-2 in a patient with a narcolepsy type 1. Encefalitis autoinmune tras vacunación e infección por el SARS-CoV-2 en un paciente con narcolepsia de tipo 1. Rev Neurol. 2024;78(9):265-268. doi:10.33588/rn.7809.2023306
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Alghamdi Y, Abdulghani F, Huwait HF, Abdulghani M, Samarkandy SJ. An Unusual Presentation of Erythema Multiforme Following the Administration of Pfizer-BioNTech COVID-19 mRNA Vaccine in a Pediatric Patient. Cureus. 2024;16(4):e58450. Published 2024 Apr 17. doi:10.7759/cureus.58450
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Mullan G, Kinney M. Anti-LGI-1 Limbic Encephalitis and Autoimmune Epilepsy Following a Third Dose of COVID-19 Vaccination: A Case Report. Neurohospitalist. 2024;14(3):332-335. doi:10.1177/19418744241234100
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‘VEXAS Syndrome After COVID-19 Vaccination’: Journal ‘Modern Rheumatology Case Reports’
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Miyagi Y, Kobayashi H, Umebayashi Y, et al. A Japanese case of VEXAS syndrome after COVID-19 vaccination: Comparison with previously reported cases. Mod Rheumatol Case Rep. 2025;9(1):218-223. doi:10.1093/mrcr/rxae054
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Yoshino Y, Yamanaka Y, Oda A. Otitis Media with ANCA-Associated Vasculitis Following COVID-19 mRNA Vaccination: A Case Report. Am J Case Rep. 2024;25:e945301. Published 2024 Sep 30. doi:10.12659/AJCR.945301
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Considerando que las inyecciones basadas en ADN/ARN se han asociado con una amplia gama de afecciones inflamatorias, incluidas enfermedades autoinflamatorias sistémicas, inflamación cerebral autoinmune, artritis psoriásica, artritis reumatoide y síndrome de activación de macrófagos, lo que genera preocupaciones importantes sobre su papel en el desencadenamiento y exacerbación de trastornos inflamatorios graves.
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Inflammation
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Systemic Autoinflammatory Disease Following COVID-19 Vaccination: Journal ‘Cureus’
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Nishioka H, Shirota S. Adult-Onset Still’s Disease After an mRNA COVID-19 Vaccine in an Older Woman. Cureus. 2024;16(1):e51540. Published 2024 Jan 2. doi:10.7759/cureus.51540
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Di Tella M, Nahi YC, Paglia G, Geminiani GC. A Case Report of Autoimmune Encephalitis after Anti-SARS-CoV-2 Vaccination: The Role of Cognitive Impairments in the Diagnostic Process. Arch Clin Neuropsychol. 2024;39(6):775-781. doi:10.1093/arclin/acae031
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Eye Inflammation, Blood Supply Deficiency Following COVID Jab: ‘Korean Journal of Ophthalmology’
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Seo EJ, Jung MS, Lee K, Kim KT, Choi MY. Ischemic and Inflammatory Ocular Adverse Events Following Different Types of Vaccination for COVID-19 and Their Incidence Analysis. Korean J Ophthalmol. 2024;38(3):203-211. doi:10.3341/kjo.2023.0090
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Matsuo T, Iguchi D. Rare Combination of Abducens Nerve Palsy and Optic Neuritis on the Same Side: Case Report and Review of 8 Patients in Literature. J Investig Med High Impact Case Rep. 2024;12:23247096231225873. doi:10.1177/23247096231225873
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Al-Hawamdeh MI, Abu-Huwaij R, Astiti TA, Al-Debe’e AK, Abazeed OJ, Raees MA. Association between COVID-19 vaccines and development of chronic morbidities: a cross-sectional study in the Jordanian population. Curr Med Res Opin. 2024;40(3):537-543. doi:10.1080/03007995.2024.2303417
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COVID Jab ‘Can Potentially Induce or Worsen Psoriatic Arthritis’: Journal ‘Dermatology and Therapy’
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Yeh YT, Tsai TF. Drug- or Vaccine-Induced/Aggravated Psoriatic Arthritis: A Systematic Review. Dermatol Ther (Heidelb). 2024;14(1):59-81. doi:10.1007/s13555-023-01082-z
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Al-Hawamdeh MI, Abu-Huwaij R, Astiti TA, Al-Debe’e AK, Abazeed OJ, Raees MA. Association between COVID-19 vaccines and development of chronic morbidities: a cross-sectional study in the Jordanian population. Curr Med Res Opin. 2024;40(3):537-543. doi:10.1080/03007995.2024.2303417
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Sousa M, Gersão S, Sousa HB. New-Onset Psoriatic Arthritis Following COVID-19 mRNA Vaccination in a Psoriatic Patient Under Anti-tumor Necrosis Factor Alpha Biologic Treatment: What Now?. Cureus. 2023;15(12):e50723. Published 2023 Dec 18. doi:10.7759/cureus.50723
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‘New-onset Seropositive Rheumatoid Arthritis Post-mRNA COVID-19 Vaccine’: ‘Oman Medical Journal’
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Almouslem A, Al Lawati T, Al Shirawi A, Al Amri U. New-onset Seropositive Rheumatoid Arthritis Post-mRNA COVID-19 Vaccine: A Case Report. Oman Med J. 2024;39(4):e597. Published 2024 Jan 31. doi:10.5001/omj.2024.06
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Yoshino Y, Tsuboi K. Eosinophilic Gastroenteritis Following Covid-19 MRNA Vaccination. Eur J Case Rep Intern Med. 2024;11(3):004316. Published 2024 Feb 12. doi:10.12890/2024_004316
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‘Lichen Planus Triggered by COVID-19 Vaccination’: ‘Journal of Family Medicine & Primary Care’
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Narasimhan M, Ramakrishnan R, Varri DS, Sivasubramanian M. Lichen planus triggered by COVID-19 vaccination: A case series. J Family Med Prim Care. 2024;13(1):384-387. doi:10.4103/jfmpc.jfmpc_664_23
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‘New-onset of rheumatic diseases following COVID-19 vaccination’: Journal ‘Immunological Medicine’
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Matsuda M, Funakubo Asanuma Y, Emoto K, et al. New-onset of rheumatic diseases following COVID-19 vaccination: the report of three cases and a literature review. Immunol Med. 2024;47(3):205-216. doi:10.1080/25785826.2024.2339542
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‘Elevated Risk of Uveitis Following COVID-19 Vaccination’: Journal ‘JAMA Ophthalmology’
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Kim J, Kwon HY, Ahn SJ. COVID-19 Vaccine-Associated Uveitis in Patients With a History of Uveitis. JAMA Ophthalmol. 2024;142(6):522-528. doi:10.1001/jamaophthalmol.2024.0973
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Mülkoğlu C, Tiftik T, Deniz AB, Taka İ, Genç H. Analysis of patients with adhesive capsulitis after COVID-19 vaccination: An observational study. Turk J Phys Med Rehabil. 2023;69(4):520-525. Published 2023 Oct 12. doi:10.5606/tftrd.2023.12660
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‘Acute Transverse Myelitis after COVID-19 Vaccination’: Journal ‘Clinics & Practice’
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Niebrzydowski P, Kusiak-Kaczmarek M, Tomaszewski J, Gmiński M, Szalewska D. Case Report: The Rehabilitation of a Patient with Acute Transverse Myelitis after COVID-19 Vaccination. Clin Pract. 2024;14(3):1076-1084. Published 2024 Jun 6. doi:10.3390/clinpract14030085
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Saito S, Iijima M, Seki M, Shimomura A, Kitagawa K. Chronic Inflammatory Demyelinating Polyradiculoneuropathy with Diplopia Caused by an Alternative Coronavirus Disease 2019 Vaccine. Case Rep Neurol Med. 2024;2024:8584482. Published 2024 Jun 11. doi:10.1155/2024/8584482
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Fajloun Z, Tajer L, Khattar ZA, Sabatier JM. Unveiling the Role of SARS-CoV-2 or mRNA Vaccine Spike Protein in Macrophage Activation Syndrome (MAS). Infect Disord Drug Targets. Published online July 22, 2024. doi:10.2174/0118715265341206240722050403
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‘ASIA Syndrome After BNT162b2 Vaccination’: Journal ‘Journal of Immunology Research’
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Pekdiker M, Ketenci S. ASIA syndrome after BNT162b2 vaccination: Is it a distinct rheumatoid arthritis phenotype?. Immunol Res. 2024;72(6):1424-1431. doi:10.1007/s12026-024-09540-2
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‘Polymyalgia Rheumatica Following COVID-19 Vaccination’: Journal ‘Medicine’
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Irani L, Bou Karroum M, Chehab Y, Abi Saad N, Al Dailaty A, Husni R. Polymyalgia rheumatica following COVID-19 vaccination: Case series of 3 patients and literature review on polymyalgia rheumatica induced by various vaccines. Medicine (Baltimore). 2024;103(43):e40204. doi:10.1097/MD.0000000000040204
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Considerando que las inyecciones basadas en ADN/ARN se han relacionado con el desarrollo de alergias a la carne en casi 2 de cada 10 receptores, lo que genera preocupación sobre su potencial para inducir reacciones alérgicas graves y restricciones dietéticas.
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Allergies
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Richards NE, Ailsworth SM, Workman LJ, et al. Mammalian Meat Allergy and IgE to Alpha-Gal in Central Virginia: Findings From a COVID-19 Vaccine and Patient Cohort. J Allergy Clin Immunol Pract. 2024;12(10):2817-2825.e2. doi:10.1016/j.jaip.2024.06.035
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Considerando que las vacunas de ARNm autoamplificantes (samRNA) plantean riesgos importantes, incluido el potencial de inyectar virus vivos y autorreplicantes en los receptores debido a la contaminación, la producción de proteínas de pico aún más tóxicas en el cuerpo en comparación con las vacunas de ARNm regulares y su clasificación como OGM por parte del gobierno australiano, lo que genera serias preocupaciones sobre su seguridad y supervisión regulatoria.
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samRNA Problems
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Hick TAH, Geertsema C, Nijland R, Pijlman GP. Packaging of alphavirus-based self-amplifying mRNA yields replication-competent virus through a mechanism of aberrant homologous RNA recombination. mBio. 2024;15(10):e0249424. doi:10.1128/mbio.02494-24
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Hồ NT, Hughes SG, Ta VT, et al. Safety, immunogenicity and efficacy of the self-amplifying mRNA ARCT-154 COVID-19 vaccine: pooled phase 1, 2, 3a and 3b randomized, controlled trials. Nat Commun. 2024;15(1):4081. Published 2024 May 14. doi:10.1038/s41467-024-47905-1
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Considerando que los tratamientos aprobados por la FDA, seguros, eficaces y fácilmente disponibles, como la budesonida, la ivermectina, la hidroxicloroquina y los anticuerpos monoclonales, han demostrado una eficacia significativa en el tratamiento temprano y tardío de la COVID-19, y el testimonio de expertos y los estudios clínicos confirman su potencial para prevenir resultados graves y reducir la mortalidad, lo que genera inquietudes sobre la priorización de las vacunas experimentales sobre estas terapias probadas.
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Readily Available, Safe, Effective FDA-Approved Treatments
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Budesonide
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Evidence – Budesonide Is Safe, Effective Early and Late Treatment for COVID-19
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Bartlett R, Fleetwood J. Evidence – Budesonide Is Safe, Effective Early and Late Treatment for COVID-19. G Med Sci. 2024;5(1):147-155. doi:10.46766/thegms.pubheal.24090601.
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Ivermectin
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Varnaseri M, Amini F, Jamshididan R, et al. Ivermectin as a Potential Addition to the Limited Anti-COVID-19 Arsenal: A Double-Blinded Clinical Trial. Jundishapur J Health Sci. 2024;16(2):e146703. doi:10.5812/jjhs-146703.
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Kerr L, Cadegiani FA, Baldi F, et al. Ivermectin Prophylaxis Used for COVID-19: A Citywide, Prospective, Observational Study of 223,128 Subjects Using Propensity Score Matching [published correction appears in Cureus. 2022 Mar 24;14(3):c61. doi: 10.7759/cureus.c61.]. Cureus. 2022;14(1):e21272. Published 2022 Jan 15. doi:10.7759/cureus.21272
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Hydroxychloroquine
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Schilling WHK, Mukaka M, Callery JJ, et al. Evaluation of hydroxychloroquine or chloroquine for the prevention of COVID-19 (COPCOV): A double-blind, randomised, placebo-controlled trial. PLoS Med. 2024;21(9):e1004428. Published 2024 Sep 12. doi:10.1371/journal.pmed.1004428
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Monoclonal Antibodies
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Piepenbrink MS, Khalil AM, Chang A, et al. Potent neutralization by a receptor binding domain monoclonal antibody with broad specificity for SARS-CoV-2 JN.1 and other variants. Preprint. bioRxiv. 2024;2024.04.27.591446. Published 2024 Apr 29. doi:10.1101/2024.04.27.591446
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Other
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These 7 Natural Compounds Show ‘Potential Use in COVID-19 Treatment’: Journal ‘Dove Medical Press’
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Velásquez PA, Hernandez JC, Galeano E, Hincapié-García J, Rugeles MT, Zapata-Builes W. Effectiveness of Drug Repurposing and Natural Products Against SARS-CoV-2: A Comprehensive Review. Clin Pharmacol. 2024;16:1-25. Published 2024 Jan 4. doi:10.2147/CPAA.S429064
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Considerando que las intervenciones farmacéuticas de ADN/ARN se han relacionado con efectos adversos graves en animales, incluido un shock anafiláctico en el 100% de los sujetos expuestos al ingrediente PEG, una mortalidad significativa en el ganado inyectado con vacunas de ARN y comportamientos similares al autismo en las crías de ratas preñadas vacunadas, lo que plantea serias preocupaciones sobre la seguridad de estas vacunas tanto para los animales como para los seres humanos.
Animals
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Barta BA, Radovits T, Dobos AB, et al. Comirnaty-induced cardiopulmonary distress and other symptoms of complement-mediated pseudo-anaphylaxis in a hyperimmune pig model: Causal role of anti-PEG antibodies. Vaccine X. 2024;19:100497. Published 2024 May 23. doi:10.1016/j.jvacx.2024.100497
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RNA Vaccine Injected Into U.S. Pork Livestock Kills 1 in 31 Pigs, Raising Meat Safety Concerns
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United States Department of Agriculture (USDA). Summary of Studies Supporting USDA Product Licensure: Swine Influenza Vaccine, N1 & N2, RNA Particle. USDA Vet Biologics. June 24, 2022. Establishment Number: 165A. Product Code: 19A5.R8.
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Erdogan MA, Gurbuz O, Bozkurt MF, Erbas O. Prenatal Exposure to COVID-19 mRNA Vaccine BNT162b2 Induces Autism-Like Behaviors in Male Neonatal Rats: Insights into WNT and BDNF Signaling Perturbations. Neurochem Res. 2024;49(4):1034-1048. doi:10.1007/s11064-023-04089-2
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Considerando que no se han realizado estudios aleatorizados, doble ciego y controlados con placebo a largo plazo para evaluar la seguridad de las intervenciones farmacéuticas basadas en ADN/ARN en productos agrícolas, a pesar de la creciente evidencia de efectos adversos graves en humanos, animales y el medio ambiente, incluyendo alteraciones del sistema inmunológico, eventos cardiovasculares, complicaciones neurológicas, trastornos autoinmunes y riesgos de contaminación como SV40 y la integración del ADN, lo que genera preocupaciones significativas sobre el impacto desconocido y potencialmente dañino de estas tecnologías en la seguridad alimentaria, el bienestar animal y la salud humana.