SHIV-162P3 infection of rhesus macaques given maraviroc gel vaginally does not involve resistant viruses

Athe M N Tsibris1, Urboshi Pal, Allison L Schure

  • 1Massachusetts General Hospital, Boston, Massachusetts, United States of America. atsibris@partners.org

Plos One
|December 14, 2011
PubMed

Insights

Maraviroc (MVC) vaginal gels help prevent SHIV transmission in macaques, but breakthrough infections can happen. Studies show these infections are likely due to incomplete viral blocking, not the virus becoming resistant to MVC.

Area of Science:

  • Virology
  • Immunology
  • Primate Models

Background:

  • Maraviroc (MVC) vaginal gels demonstrate efficacy in preventing vaginal simian-human immunodeficiency virus (SHIV) transmission in rhesus macaques.
  • Breakthrough SHIV infections can occur despite MVC gel application, necessitating an investigation into the underlying mechanisms.

Purpose of the Study:

  • To investigate the characteristics of SHIV populations following breakthrough infections in macaques treated with MVC vaginal gel.
  • To determine if MVC resistance develops in SHIV isolates from macaques that experienced breakthrough infections.

Main Methods:

  • Analysis of plasma samples from rhesus macaques receiving MVC or placebo vaginal gel followed by SHIV-162P3 challenge.
  • Viral genetic sequencing, determination of 50% inhibitory concentration (IC50) for MVC susceptibility, and phylogenetic analysis.

Main Results:

  • No consistent envelope mutations or selection of MVC-resistant variants were observed in breakthrough SHIV isolates.
  • SHIV isolates from MVC-treated macaques showed similar MVC susceptibility (IC50) compared to the initial inoculum.
  • Highlighter plot and phylogenetic analyses indicated infection was established by a single founder virus genotype, without distinct lineages.

Conclusions:

  • Breakthrough SHIV infections in macaques treated with MVC vaginal gel are attributed to incomplete viral inhibition rather than the emergence of MVC-resistant viral strains.
  • These findings support the continued development of MVC-based topical microbicides for HIV prevention.

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