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Repeated exposure to heterologous hepatitis C viruses associates with enhanced neutralizing antibody breadth and potency
Nicole Frumento, Alexis Figueroa, Tingchang Wang, Muhammad N. Zahid, Shuyi Wang, Guido Massaccesi, Georgia Stavrakis, James E. Crowe Jr, Andrew I. Flyak, Hongkai Ji, Stuart C. Ray, George M. Shaw, Andrea L. Cox, Justin R. Bailey
Nicole Frumento, Alexis Figueroa, Tingchang Wang, Muhammad N. Zahid, Shuyi Wang, Guido Massaccesi, Georgia Stavrakis, James E. Crowe Jr, Andrew I. Flyak, Hongkai Ji, Stuart C. Ray, George M. Shaw, Andrea L. Cox, Justin R. Bailey
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Research Article Immunology Virology

Repeated exposure to heterologous hepatitis C viruses associates with enhanced neutralizing antibody breadth and potency

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Abstract

A prophylactic hepatitis C virus (HCV) vaccine that elicits neutralizing antibodies could be key to HCV eradication. However, the genetic and antigenic properties of HCV envelope (E1E2) proteins capable of inducing anti-HCV broadly neutralizing antibodies (bNAbs) in humans have not been defined. Here, we investigated the development of bNAbs in longitudinal plasma of HCV-infected persons with persistent infection or spontaneous clearance of multiple reinfections. By measuring plasma antibody neutralization of a heterologous virus panel, we found that the breadth and potency of the antibody response increased upon exposure to multiple genetically distinct infections and with longer duration of viremia. Greater genetic divergence between infecting strains was not associated with enhanced neutralizing breadth. Rather, repeated exposure to antigenically related, antibody-sensitive E1E2s was associated with potent bNAb induction. These data reveal that a prime-boost vaccine strategy with genetically distinct, antibody-sensitive viruses is a promising approach to inducing potent bNAbs in humans.

Authors

Nicole Frumento, Alexis Figueroa, Tingchang Wang, Muhammad N. Zahid, Shuyi Wang, Guido Massaccesi, Georgia Stavrakis, James E. Crowe Jr, Andrew I. Flyak, Hongkai Ji, Stuart C. Ray, George M. Shaw, Andrea L. Cox, Justin R. Bailey

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Figure 5

Greater genetic distance between infecting viruses is not associated with increased neutralizing breadth or potency.

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Greater genetic distance between infecting viruses is not associated wit...
(A) Table illustrating divergence of each reinfecting virus E1E2 sequence (amino acid p distance) from that subject’s infection 1 T/F virus E1E2 sequence. (B) Quasi-Poisson regression (left) and linear regression (right) analyses for the association of divergence, number of infections, and DOV with neutralizing breadth (left) or neutralizing potency (right). Curves and 95% prediction intervals (shaded areas) for each number of infections are shown in different colors. Model equations and tables with the estimated coefficients and 95% CI for each variable are shown (below).

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ISSN: 0021-9738 (print), 1558-8238 (online)

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