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Analysis of Simian Immunodeficiency Virus-specific CD8+ T-cells in Rhesus Macaques by Peptide-MHC-I Tetramer Staining
Published on: December 23, 2016
Systemic and intestinal immune responses to HIV-2287 infection in Macaca nemestrina
1Regional Primate Research Center, University of Washington, Seattle, Washington 98195, USA. lkuller@bart.rprc.wasjhigton.edu
Abstract:
Nonhuman primate models of human AIDS have been used successfully to evaluate candidate vaccines and infection intervention therapies. Successes of pathogenicity studies in primate models have been limited because of the varied infection outcomes and characteristic low number of study animals. The acutely pathogenic HIV-2(287)--Macaca nemestrina model has shown promise both in antiviral drug evaluation and in pathogenicity studies. Here we describe virus replication, spread, and host responses during the first 28 days of HIV-2(287) infection. Focusing on 18 macaques from a larger 27-macaque study, we report changing virus loads, CD4(+) cell depletions, and antibody responses both systemically and in the mucosa of the small intestine. After intravenous inoculation, blood and intestinal tissue were collected from pairs of macaques at 12 hr and 1, 2, 4, 6, 10, 14, 21, and 28 days postinfection. Specimens were examined for evidence of infection by quantitative cultures, in situ hybridization, lymphocyte subset monitoring, and antibody production. The data were presented serially as though all samples were collected from a single macaque. The highest blood virus loads were detected between days 10 and 14 and subsequently decreased through day 28. This coincided with a significant increase in ileum mucosa virus loads on day 10, which became undetectable by day 28. The lowest levels of CD4(+) cells were observed on days 21 and 28 in blood and ileum mucosa. CD4(+):CD8(+) cell ratios in blood and ileum dropped dramatically after day 10 to lowest levels by day 28. Intestinal virus loads were inversely correlated with CD4(+) cell and virus-specific antibody levels in the ileum after day 6. These results underscore the suitability of this model for pathogenicity studies as well as the importance of the intestinal lymphoid tissues as an initial site of virus replication and cell destruction during the acute, asymptomatic stage of AIDS development.
Insights
This study tracks HIV-2(287) infection in macaques, revealing initial virus replication in the gut. Intestinal CD4+ cell depletion and antibody responses are key to understanding AIDS development.
Area of Science:
- Virology
- Immunology
- Primate Models
Background:
- Nonhuman primate models are crucial for evaluating AIDS interventions.
- Pathogenicity studies in primates face challenges due to variable outcomes and small sample sizes.
- The HIV-2(287)--Macaca nemestrina model offers a promising tool for antiviral drug evaluation and pathogenicity research.
Purpose of the Study:
- To characterize virus replication, spread, and host responses during the acute phase of HIV-2(287) infection in macaques.
- To investigate systemic and mucosal immune responses, including CD4+ cell depletion and antibody production.
- To assess the suitability of this model for AIDS pathogenicity studies.
Main Methods:
- Intravenous inoculation of HIV-2(287) in 18 macaques.
- Serial collection of blood and intestinal tissue (ileum) at multiple time points up to 28 days post-infection.
- Analysis using quantitative cultures, in situ hybridization, lymphocyte subset monitoring, and antibody assays.
Main Results:
- Peak blood virus loads observed between days 10-14, followed by a decrease.
- Transient increase in ileum mucosa virus loads on day 10, becoming undetectable by day 28.
- Significant CD4+ cell depletion in blood and ileum by days 21-28.
- Inverse correlation between intestinal virus loads and ileum CD4+ cell/antibody levels post-day 6.
Conclusions:
- The HIV-2(287)--Macaca nemestrina model is suitable for AIDS pathogenicity studies.
- The intestinal lymphoid tissue serves as an initial site for HIV-2 replication and CD4+ cell destruction.
- Understanding early mucosal responses is critical for developing effective AIDS interventions.
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