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Heterologous booster vaccination enhances antibody responses to SARS-CoV-2 by improving Tfh function and increasing B-cell clonotype SHM frequency

Frontiers in Immunology. 2024-06; 
Yanli Song, Jiaolei Wang, Zhihui Yang, Changgui Li
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Catalog Peptides Isolated B cells and Tfh cells were cocultured as previously described with minor modifications (23, 24). 3×10^5/well B cells were cultured with or without 1.5×10^5/well Tfh cells in the presence of 5mg/ml spike peptide pools (GenScript, cat RP30020) Get A Quote

Abstract

Heterologous prime-boost has broken the protective immune response bottleneck of the COVID-19 vaccines. however, the underlying mechanisms have not been fully elucidated. Here, we investigated antibody responses and explored the response of germinal center (GC) to priming with inactivated vaccines and boosting with heterologous adenoviral-vectored vaccines or homologous inactivated vaccines in mice. Antibody responses were dramatically enhanced by both boosting regimens. Heterologous immunization induced more robust GC activation, characterized by increased Tfh cell populations and enhanced helper function. Additionally, increased B-cell activation and antibody production were observed in a heterologous regimen... More

Keywords

homologous, heterologous, SARS-CoV-2, Libra-seq, SHMS, Germinal Center, Tfh cells