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    Date Issued2016 (1)2013 (1)AuthorBarouch, Dan H. (2)Li, Wenjun (2)
    Liu, Jinyan (2)
    Abbink, Peter (1)Borducchi, Erica N. (1)View MoreUMass Chan AffiliationDepartment of Medicine, Division of Preventive and Behavioral Medicine (2)Document TypeJournal Article (2)KeywordVirus Diseases (2)*HIV-1 (1)AIDS Vaccines (1)Animals (1)Antibody Formation (1)View MoreJournalCell (1)Science (New York, N.Y.) (1)

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    Antibody-mediated protection against SHIV challenge includes systemic clearance of distal virus

    Liu, Jinyan; Li, Wenjun; Barouch, Dan H. (2016-09-02)
    HIV-1-specific broadly neutralizing antibodies (bNAbs) can protect rhesus monkeys against simian-human immunodeficiency virus (SHIV) challenge. However, the site of antibody interception of virus and the mechanism of antibody-mediated protection remain unclear. We administered a fully protective dose of the bNAb PGT121 to rhesus monkeys and challenged them intravaginally with SHIV-SF162P3. In PGT121-treated animals, we detected low levels of viral RNA and viral DNA in distal tissues for seven days following challenge. Viral RNA-positive tissues showed transcriptomic changes indicative of innate immune activation, and cells from these tissues initiated infection after adoptive transfer into naive hosts. These data demonstrate that bNAb-mediated protection against a mucosal virus challenge can involve clearance of infectious virus in distal tissues.
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    Protective efficacy of a global HIV-1 mosaic vaccine against heterologous SHIV challenges in rhesus monkeys

    Barouch, Dan H.; Stephenson, Kathryn E.; Borducchi, Erica N.; Smith, Kaitlin; Stanley, Kelly; McNally, Anna G.; Liu, Jinyan; Abbink, Peter; Maxfield, Lori F.; Seaman, Michael S.; et al. (2013-10-24)
    The global diversity of HIV-1 represents a critical challenge facing HIV-1 vaccine development. HIV-1 mosaic antigens are bioinformatically optimized immunogens designed for improved coverage of HIV-1 diversity. However, the protective efficacy of such global HIV-1 vaccine antigens has not previously been evaluated. Here, we demonstrate the capacity of bivalent HIV-1 mosaic antigens to protect rhesus monkeys against acquisition of infection following heterologous challenges with the difficult-to-neutralize simian-human immunodeficiency virus SHIV-SF162P3. Adenovirus/poxvirus and adenovirus/adenovirus vector-based vaccines expressing HIV-1 mosaic Env, Gag, and Pol afforded a significant reduction in the per-exposure acquisition risk following repetitive, intrarectal SHIV-SF162P3 challenges. Protection against acquisition of infection correlated with vaccine-elicited binding, neutralizing, and functional nonneutralizing antibodies, suggesting that the coordinated activity of multiple antibody functions may contribute to protection against difficult-to-neutralize viruses. These data demonstrate the protective efficacy of HIV-1 mosaic antigens and suggest a potential strategy for the development of a global HIV-1 vaccine. PAPERCLIP:
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