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Antiretroviral Therapy in Simian Immunodeficiency Virus-Infected Sooty Mangabeys: Implications for AIDS Pathogenesis
Francesca Calascibetta1,2, Luca Micci1, Diane Carnathan1
1Yerkes National Primate Research Center and Emory Vaccine Center, Emory University, Atlanta, Georgia, USA.
Unlabelled:
Simian immunodeficiency virus (SIV)-infected sooty mangabeys (SMs) do not develop AIDS despite high levels of viremia. Key factors involved in the benign course of SIV infection in SMs are the absence of chronic immune activation and low levels of infection of CD4(+) central memory (TCM) and stem cell memory (TSCM) T cells. To better understand the role of virus replication in determining the main features of SIV infection in SMs, we treated 12 SMs with a potent antiretroviral therapy (ART) regimen for 2 to 12 months. We observed that ART suppressed viremia to <60 copies/ml of plasma in 10 of 12 animals and induced a variable decrease in the level of cell-associated SIV DNA in peripheral blood (average changes of 0.9-, 1.1-, 1.5-, and 3.7-fold for CD4(+) transitional memory [TTM], TCM, effector memory [TEM], and TSCM cells, respectively). ART-treated SIV-infected SMs showed (i) increased percentages of circulating CD4(+) TCM cells, (ii) increased levels of CD4(+) T cells in the rectal mucosa, and (iii) significant declines in the frequencies of HLA-DR(+) CD8(+) T cells in the blood and rectal mucosa. In addition, we observed that ART interruption resulted in rapid viral rebound in all SIV-infected SMs, indicating that the virus reservoir persists for at least a year under ART despite lower infection levels of CD4(+) TCM and TSCM cells than those seen in pathogenic SIV infections of macaques. Overall, these data indicate that ART induces specific immunological changes in SIV-infected SMs, thus suggesting that virus replication affects immune function even in the context of this clinically benign infection.
Importance:
Studies of natural, nonpathogenic simian immunodeficiency virus (SIV) infection of African monkeys have provided important insights into the mechanisms responsible for the progression to AIDS during pathogenic human immunodeficiency virus (HIV) infection of humans and SIV infection of Asian macaques. In this study, for the first time, we treated SIV-infected sooty mangabeys, a natural host for the infection, with a potent antiretroviral therapy (ART) regimen for periods ranging from 2 to 12 months and monitored in detail how suppression of virus replication affected the main virological and immunological features of this nonpathogenic infection. The observed findings provide novel information on both the pathogenesis of residual immunological disease under ART during pathogenic infection and the mechanisms involved in virus persistence during primate lentiviral infections.
Insights
Simian immunodeficiency virus (SIV) infection in sooty mangabeys remains benign due to low T-cell infection. Antiretroviral therapy (ART) suppressed SIV, altered immune cell levels, and reduced immune activation, indicating virus replication impacts immune function.
Area of Science:
- Primate lentiviral infections
- Immunology of nonpathogenic SIV infection
- Antiretroviral therapy (ART) effects
Background:
- Sooty mangabeys (SMs) naturally host simian immunodeficiency virus (SIV) without developing AIDS, unlike macaques.
- Key factors for benign SIV infection in SMs include absent chronic immune activation and low CD4(+) T-cell infection (central memory [TCM] and stem cell memory [TSCM]).
- Understanding SIV's role in SMs offers insights into pathogenic HIV/SIV infections and AIDS progression.
Purpose of the Study:
- To investigate the impact of suppressing virus replication with antiretroviral therapy (ART) on the virological and immunological features of SIV infection in sooty mangabeys.
- To elucidate the mechanisms of virus persistence and residual immunological disease under ART in primate lentiviral infections.
Main Methods:
- Treated 12 SIV-infected sooty mangabeys with a potent ART regimen for 2 to 12 months.
- Monitored plasma viremia, cell-associated SIV DNA levels in various CD4(+) T-cell subsets (TTM, TCM, TEM, TSCM), and immune activation markers (HLA-DR on CD8(+) T cells).
- Assessed changes in circulating CD4(+) TCM cells, CD4(+) T-cell levels in rectal mucosa, and HLA-DR(+) CD8(+) T-cell frequencies post-ART and after ART interruption.
Main Results:
- ART suppressed viremia to <60 copies/ml in 10/12 SMs and reduced cell-associated SIV DNA, with greater decreases in effector memory (TEM) and stem cell memory (TSCM) T cells.
- ART treatment led to increased circulating CD4(+) TCM cells, elevated CD4(+) T-cell levels in rectal mucosa, and decreased immune activation (HLA-DR(+) CD8(+) T cells).
- ART interruption caused rapid viral rebound, demonstrating persistent viral reservoirs despite reduced T-cell infection under ART.
Conclusions:
- ART induces specific immunological improvements in SIV-infected SMs, including reduced immune activation and altered T-cell dynamics.
- Virus replication significantly influences immune function even in clinically benign SIV infections.
- The study highlights mechanisms of virus persistence and residual disease relevant to both nonpathogenic and pathogenic primate lentiviral infections.
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