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Updated: Nov 14, 2025

Analysis of Simian Immunodeficiency Virus-specific CD8+ T-cells in Rhesus Macaques by Peptide-MHC-I Tetramer Staining
Published on: December 23, 2016
Effects of persistent modulation of intestinal microbiota on SIV/HIV vaccination in rhesus macaques
Nichole R Klatt1,2,3,4, Courtney Broedlow5,6,7, Jessica M Osborn6,8
1Department of Pharmaceutics, University of Washington, Seattle, WA, USA. klat0037@umn.edu.
Abstract:
An effective vaccine to prevent HIV transmission has not yet been achieved. Modulation of the microbiome via probiotic therapy has been suggested to result in enhanced mucosal immunity. Here, we evaluated whether probiotic therapy could improve the immunogenicity and protective efficacy of SIV/HIV vaccination. Rhesus macaques were co-immunized with an SIV/HIV DNA vaccine via particle-mediated epidermal delivery and an HIV protein vaccine administered intramuscularly with Adjuplex™ adjuvant, while receiving daily oral Visbiome® probiotics. Probiotic therapy alone led to reduced frequencies of colonic CCR5+ and CCR6+ CD4+ T cells. Probiotics with SIV/HIV vaccination led to similar reductions in colonic CCR5+ CD4+ T cell frequencies. SIV/HIV-specific T cell and antibody responses were readily detected in the periphery of vaccinated animals but were not enhanced with probiotic treatment. Combination probiotics and vaccination did not impact rectal SIV/HIV target populations or reduce the rate of heterologous SHIV acquisition during the intrarectal challenge. Finally, post-infection viral kinetics were similar between all groups. Thus, although probiotics were well-tolerated when administered with SIV/HIV vaccination, vaccine-specific responses were not significantly enhanced. Additional work will be necessary to develop more effective strategies of microbiome modulation in order to enhance mucosal vaccine immunogenicity and improve protective immune responses.
Insights
Probiotic therapy did not enhance immune responses or protective efficacy when combined with an SIV/HIV vaccine in macaques. Further research is needed to improve microbiome modulation for better mucosal vaccine immunogenicity.
Area of Science:
- Immunology
- Vaccinology
- Microbiome research
Background:
- Developing an effective HIV vaccine remains a significant global health challenge.
- Modulating the gut microbiome with probiotics may enhance mucosal immunity, offering a potential strategy to improve vaccine efficacy.
Purpose of the Study:
- To investigate if probiotic therapy can improve the immunogenicity and protective efficacy of an SIV/HIV vaccine.
- To assess the impact of probiotics on immune cell populations and vaccine-specific responses in macaques.
Main Methods:
- Rhesus macaques were vaccinated with an SIV/HIV DNA vaccine and a protein vaccine, co-administered with daily oral probiotics (Visbiome®).
- Immune responses, including T cell and antibody levels, were measured in peripheral blood.
- Rectal target cell populations and protection against SHIV challenge were evaluated.
Main Results:
- Probiotic therapy alone reduced specific colonic CD4+ T cell frequencies.
- Combining probiotics with SIV/HIV vaccination did not enhance vaccine-specific T cell or antibody responses.
- Probiotics and vaccination did not alter rectal SIV/HIV target cell populations or reduce SHIV acquisition rates.
Conclusions:
- While well-tolerated, probiotics did not significantly enhance the immunogenicity or protective efficacy of the SIV/HIV vaccine in this study.
- More advanced microbiome modulation strategies are required to improve mucosal vaccine effectiveness.

