Covid vaccine safety risks

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400,000 Cases of COVID Vaccine Injuries Found in Data Analyzed by German Health Insurer
400,000 Cases of COVID Vaccine Injuries Found in Data Analyzed by German Health Insurer
A German health insurer BKK ProVita said an analysis of data collected from more than 10 million people suggests COVID vaccine side effects are “significantly” underreported. The company said its analysis revealed a “significant alarm signal” and said "a risk to human life cannot be ruled out.”
·childrenshealthdefense.org·
400,000 Cases of COVID Vaccine Injuries Found in Data Analyzed by German Health Insurer
Moderna Recalls 764,900 COVID-19 Vaccine Doses After Contamination Found
Moderna Recalls 764,900 COVID-19 Vaccine Doses After Contamination Found
The U.S. pharmaceutical and biotechnology company Moderna Inc. on Friday issued a recall in Europe involving 764,900 doses of its COVID-19 vaccine “Spikevax” after contaminants were discovered in a vial. “The lot is being recalled due to a foreign body being found in one vial in the lot manufactured at the company’s contract manufacturing site, ROVI,” […]
·ntd.com·
Moderna Recalls 764,900 COVID-19 Vaccine Doses After Contamination Found
SARS–CoV–2 Spike Impairs DNA Damage Repair and Inhibits V(D)J Recombination In Vitro
SARS–CoV–2 Spike Impairs DNA Damage Repair and Inhibits V(D)J Recombination In Vitro
Severe acute respiratory syndrome coronavirus 2 (SARS–CoV–2) has led to the coronavirus disease 2019 (COVID–19) pandemic, severely affecting public health and the global economy. Adaptive immunity plays a crucial role in fighting against SARS–CoV–2 infection and directly influences the clinical outcomes of patients. Clinical studies have indicated that patients with severe COVID–19 exhibit delayed and weak adaptive immune responses; however, the mechanism by which SARS–CoV–2 impedes adaptive immunity remains unclear. Here, by using an in vitro cell line, we report that the SARS–CoV–2 spike protein significantly inhibits DNA damage repair, which is required for effective V(D)J recombination in adaptive immunity. Mechanistically, we found that the spike protein localizes in the nucleus and inhibits DNA damage repair by impeding key DNA repair protein BRCA1 and 53BP1 recruitment to the damage site. Our findings reveal a potential molecular mechanism by which the spike protein might impede adaptive immunity and underscore the potential side effects of full-length spike-based vaccines.
·mdpi.com·
SARS–CoV–2 Spike Impairs DNA Damage Repair and Inhibits V(D)J Recombination In Vitro
MSH3 Homology and Potential Recombination Link to SARS-CoV-2 Furin Cleavage Site
MSH3 Homology and Potential Recombination Link to SARS-CoV-2 Furin Cleavage Site
Among numerous point mutation differences between the SARS-CoV-2 and the bat RaTG13 coronavirus, only the 12-nucleotide furin cleavage site (FCS) exceeds 3 nucleotides. A BLAST search revealed that a 19 nucleotide portion of the SARS-CoV-2 genome encompassing the furin cleavage site is a 100% complementary match to a codon-optimized proprietary sequence that is the reverse complement of the human mutS homolog (MSH3). The reverse complement sequence present in SARS-CoV-2 may occur randomly but other possibilities must be considered. Recombination in an intermediate host is an unlikely explanation. Single stranded RNA viruses such as SARS-CoV-2 utilize negative strand RNA templates in infected cells, which might lead through copy choice recombination with a negative sense SARS-CoV-2 RNA to the integration of the MSH3 negative strand, including the FCS, into the viral genome. In any case, the presence of the 19-nucleotide long RNA sequence including the FCS with 100% identity to the reverse complement of the MSH3 mRNA is highly unusual and requires further investigations.
·frontiersin.org·
MSH3 Homology and Potential Recombination Link to SARS-CoV-2 Furin Cleavage Site