4.7 Article

Characterization of HIV-1 Nucleoside-Modified mRNA Vaccines in Rabbits and Rhesus Macaques

Journal

MOLECULAR THERAPY-NUCLEIC ACIDS
Volume 15, Issue -, Pages 36-47

Publisher

CELL PRESS
DOI: 10.1016/j.omtn.2019.03.003

Keywords

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Funding

  1. NIH [P51 OD010425]
  2. Duke CHAVI-Immunogen Discovery, Division of AIDS, NIAID, NIH [UM1 AI100645]
  3. NIH/NIAID [HHSN272201100016C]
  4. Center for HIV/AIDS Vaccine Immunology-Immunogen Discovery (CHAVI-ID) from NIH/NIAID/DAIDS [UMI-AI100645]
  5. NIAID of the NIH [R01-AI050484, R01-AI124429, R01-AI084860]
  6. Bill & Melinda Gates Foundation Collaboration for AIDS Vaccine Discovery (CAVD) [0PP1033102]

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Despite the enormous effort in the development of effective vaccines against HIV-1, no vaccine candidate has elicited broadly neutralizing antibodies in humans. Thus, generation of more effective anti-HIV vaccines is critically needed. Here we characterize the immune responses induced by nucleoside-modified and purified mRNA-lipid nanoparticle (mRNA-LNP) vaccines encoding the clade C transmitted/founder HIV-1 envelope (Env) 1086C. Intradermal vaccination with nucleoside-modified 1086C Env mRNA-LNPs elicited high levels of gp120-specific antibodies in rabbits and rhesus macaques. Antibodies generated in rabbits neutralized a tier 1 virus, but no tier 2 neutralization activity could be measured. Importantly, three of six non-human primates developed antibodies that neutralized the autologous tier 2 strain. Despite stable anti-gp120 immunoglobulin G (IgG) levels, tier 2 neutralization titers started to drop 4 weeks after booster immunizations. Serum from both immunized rabbits and non-human primates demonstrated antibody-dependent cellular cytotoxicity activity. Collectively, these results are supportive of continued development of nucleoside-modified and purified mRNA-LNP vaccines for HIV. Optimization of Env immunogens and vaccination protocols are needed to increase antibody neutralization breadth and durability.

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