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10.20411/pai.v6i1.441

http://scihub22266oqcxt.onion/10.20411/pai.v6i1.441
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34136730!8201795!34136730
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suck abstract from ncbi

pmid34136730      Pathog+Immun 2021 ; 6 (1): 116-134
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  • Antibody Responses to SARS-CoV-2 mRNA Vaccines Are Detectable in Saliva #MMPMID34136730
  • Ketas TJ; Chaturbhuj D; Portillo VMC; Francomano E; Golden E; Chandrasekhar S; Debnath G; Diaz-Tapia R; Yasmeen A; Kramer KD; Munawar T; Leconet W; Zhao Z; Brouwer PJM; Cushing MM; Sanders RW; Cupo A; Klasse PJ; Formenti SC; Moore JP
  • Pathog Immun 2021[]; 6 (1): 116-134 PMID34136730show ga
  • The approved Pfizer and Moderna mRNA vaccines are well known to induce serum antibody responses to the SARS-CoV-2 Spike (S)-protein. However, their abilities to elicit mucosal immune responses have not been reported. Saliva antibodies represent mucosal responses that may be relevant to how mRNA vaccines prevent oral and nasal SARS-CoV-2 transmission. Here, we describe the outcome of a cross-sectional study on a healthcare worker cohort (WELCOME-NYPH), in which we assessed whether IgM, IgG, and IgA antibodies to the S-protein and its receptor-binding domain (RBD) were present in serum and saliva samples. Anti-S-protein IgG was detected in 14/31 and 66/66 of saliva samples from uninfected participants after vaccine doses-1 and -2, respectively. IgA antibodies to the S-protein were present in 40/66 saliva samples after dose 2. Anti-S-protein IgG was present in every serum sample from recipients of 2 vaccine doses. Vaccine-induced antibodies against the RBD were also frequently present in saliva and sera. These findings may help our understanding of whether and how vaccines may impede SARS-CoV-2 transmission, including to oral cavity target cells.
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