Zika purified inactivated virus (ZPIV) vaccine efficacy in pregnant human stat2 knock-in mice: neutralizing antibodies as correlates of protection

Author:

Kim In-Jeong1ORCID,Tighe Mike2ORCID,Lanthier Paula1,Clark Madeline1,Barrera Rafael De La3,Dussupt Vincent4ORCID,Mendez-Rivera Letzibeth3,Krebs Shelly4ORCID,Travis Kelsey1ORCID,Low-Beer Timothy1ORCID,Bernacki Derek5ORCID,Cookenham Tres1ORCID,Lanzer Kathleen5ORCID,Szaba Frank1,Schneck Amanda2ORCID,Ward Jerrold6ORCID,Thomas Stephen7ORCID,Modjarrad Kayvon3ORCID,Blackman Marcia1ORCID

Affiliation:

1. Trudeau Institute, Inc.

2. Trudeau Institute

3. Walter Reed Army Institute of Research

4. WRAIR

5. Trudeau Institute Inc.

6. Global VetPathology

7. SUNY Upstate Medical University

Abstract

Abstract Zika virus (ZIKV) is a significant threat to pregnant women and fetuses as it can cause severe birth defects and congenital neurodevelopmental disorders, referred to as congenital Zika syndrome (CZS). Thus, a safe and effective ZIKV vaccine for pregnant women to prevent in utero ZIKV infection is of utmost importance. Murine models of ZIKV infection are limited by the fact that immunocompetent mice are resistant to ZIKV infection. As such, interferon-deficient mice have been used in some preclinical studies to test the efficacy of ZIKV vaccine candidates against lethal virus challenge. However, interferon-deficient mouse models have limitations in assessing the immunogenicity of vaccines, necessitating the use of immunocompetent mouse pregnancy models. Using the human stat2 knock-in (hSTAT2KI) mouse pregnancy model, we show that vaccination with a purified formalin-inactivated Zika virus vaccine (ZPIV) prior to pregnancy successfully prevented vertical transmission. In addition, maternal immunity protected offspring against postnatal challenge. Furthermore, passive transfer of human IgG purified from hyper-immune sera of ZPIV vaccinees prevented maternal and fetal ZIKV infection, providing strong evidence that the neutralizing antibody response may serve as a meaningful correlate of protection.

Publisher

Research Square Platform LLC

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