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Published on: February 10, 2023
Coadministration of CH31 Broadly Neutralizing Antibody Does Not Affect Development of Vaccine-Induced Anti-HIV-1
Maria Dennis1, Joshua Eudailey1, Justin Pollara2
1Duke Human Vaccine Institute, Duke University Medical Center, Durham, North Carolina, USA.
Insights
Administering a broadly neutralizing antibody (bnAb) with an HIV vaccine at birth did not hinder infant antibody development. This combination strategy shows promise for protecting newborns against mother-to-child HIV transmission.
Area of Science:
- Immunology
- Vaccinology
- Infectious Diseases
Background:
- Preventing mother-to-child HIV transmission (MTCT) is crucial for global AIDS control.
- Combining passive broadly neutralizing antibody (bnAb) infusion with active vaccination offers potential protection from birth through breastfeeding and could induce lifelong immunity.
- The impact of early-life bnAb administration on subsequent vaccine responses in infants remains largely unexplored.
Purpose of the Study:
- To investigate the effect of a single, early-life infusion of a CD4 binding site (CD4bs) bnAb on infant antibody responses to concurrent active HIV envelope vaccination.
- To assess the safety and feasibility of administering bnAbs to newborns to achieve protective antibody levels.
- To evaluate the potential of a combined passive and active immunization strategy for preventing MTCT.
Main Methods:
- Infant macaques were assigned to four groups, receiving active immunization with HIV envelope (Env) protein or modified vaccinia Ankara (MVA)-vectored Env.
- One cohort received a single intravenous coadministration of the CH31 bnAb at birth alongside active vaccination.
- Vaccinated animals were monitored for binding and functional antibody responses, including neutralization, avidity, and antibody-dependent cell-mediated cytotoxicity (ADCC).
Main Results:
- Coadministration of the CH31 bnAb at birth did not significantly alter the kinetics, magnitude, specificity, or avidity of vaccine-elicited antibody responses.
- The passive infusion achieved plasma concentrations capable of neutralizing tier 2 viruses without impairing de novo antibody development to the HIV Env vaccine.
- No adverse impact was observed on CD4bs antibody development, neutralization capacity, binding to infected cells, or ADCC.
Conclusions:
- Infusion of the CD4bs bnAb CH31 at birth is safe and feasible, achieving protective antibody levels without interfering with infant de novo antibody responses to active vaccination.
- A combination strategy of passive bnAb infusion and active HIV-1 Env vaccination is a viable approach for immediate and sustained protection against MTCT.
- This study supports further research into combined passive and active immunization for protecting infants of HIV-1-positive mothers throughout the period of transmission risk.
Abstract:
Prevention of mother-to-child transmission (MTCT) is an indispensable component in combatting the global AIDS epidemic. A combination of passive broadly neutralizing antibody (bnAb) infusion and active vaccination promises to provide protection of infants against MTCT from birth through the breastfeeding period and could prime the immune system for lifelong immunity. In this study, we investigate the impact of a single infusion of CD4 binding site (CD4bs) bnAb administered at birth on de novo antibody responses elicited by concurrent active HIV envelope vaccination. Four groups of infant macaques received active immunizations with subunit Env protein or modified vaccinia Ankara (MVA)-vectored Env and subunit Env protein, with or without a single intravenous coadministration of CH31 bnAb at birth. Vaccinated animals were monitored to evaluate binding and functional antibody responses elicited by the active vaccinations. Despite achieving plasma concentrations that were able to neutralize tier 2 viruses, coadministration of CH31 did not have a large impact on the kinetics, magnitude, specificity, or avidity of vaccine-elicited binding or functional antibody responses, including epitope specificity, the development of CD4bs antibodies, neutralization, binding to infected cells, or antibody-dependent cell-mediated cytotoxicity (ADCC). We conclude that infusion of CD4bs bnAb CH31 at birth does not interfere with de novo antibody responses to active vaccination and that a combination of passive bnAb infusion and active HIV-1 Env vaccination is a viable strategy for immediate and prolonged protection against MTCT.IMPORTANCE Our study is the first to evaluate the impact of passive infusion of a broadly neutralizing antibody in newborns on the de novo development of antibody responses following active vaccinations in infancy. We demonstrated the safety and the feasibility of bnAb administration to achieve biologically relevant levels of the antibody and showed that the passive infusion did not impair the de novo antibody production following HIV-1 Env vaccination. Our study paves the way for further investigations of the combination strategy using passive plus active immunization to provide protection of infants born to HIV-1-positive mothers over the entire period of risk for mother-to-child transmission.
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