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Published on: May 2, 2017
Marked Enteropathy in an Accelerated Macaque Model of AIDS
Joshua D Croteau1, Elizabeth L Engle1, Suzanne E Queen1
1Department of Molecular and Comparative Pathobiology, Johns Hopkins University School of Medicine, Baltimore, Maryland.
Abstract:
Enteropathy in HIV infection is not eliminated with combination antiretroviral therapy and is possibly linked to microbial translocation. We used a rapidly progressing SIV/pigtailed macaque model of HIV to examine enteropathy and microbial translocation. Histologic evidence of intestinal disease was observed in only half of infected macaques during late-stage infection (LSI). Combination antiretroviral therapy initiated during acute infection prevented intestinal disease. In the ileum and colon, enteropathy was associated with increased caspase-3 staining, decreased CD3+ T cells, and increased SIV-infected cells. CD3+ T cells were preserved in LSI animals without intestinal disease, and levels of CD3 staining in all LSI animals strongly correlated with the number of infected cells in the intestine and plasma viral load. Unexpectedly, there was little evidence of microbial translocation as measured by soluble CD14, soluble CD163, lipopolysaccharide binding protein, and microbial 16s ribosomal DNA. Loss of epithelial integrity indicated by loss of the tight junction protein claudin-3 was not observed during acute infection despite significantly fewer T cells. Claudin-3 was reduced in LSI animals with severe intestinal disease but did not correlate with increased microbial translocation. LSI animals that did not develop intestinal disease had increased T-cell intracytoplasmic antigen 1-positive cytotoxic T lymphocytes, suggesting a robust adaptive cytotoxic T-lymphocyte response may, in part, confer resilience to SIV-induced intestinal damage.
Insights
Combination antiretroviral therapy prevents intestinal disease in SIV-infected macaques. A robust cytotoxic T-lymphocyte response may protect against SIV-induced intestinal damage, independent of microbial translocation.
Area of Science:
- Immunology
- Gastroenterology
- Virology
Background:
- Enteropathy persists in HIV infection despite combination antiretroviral therapy (cART).
- Microbial translocation is a potential driver of HIV-related enteropathy.
- The SIV/pigtailed macaque model offers insights into HIV pathogenesis.
Purpose of the Study:
- To investigate the relationship between enteropathy, microbial translocation, and antiretroviral therapy in an SIV macaque model.
- To identify factors conferring resilience to SIV-induced intestinal damage.
Main Methods:
- Histological examination of intestinal tissue from SIV-infected macaques.
- Assessment of enteropathy markers (caspase-3, CD3+ T cells, SIV-infected cells, claudin-3).
- Measurement of microbial translocation markers (soluble CD14, CD163, LBP, 16S rDNA) and cytotoxic T-lymphocyte response.
Main Results:
- cART initiated during acute infection prevented intestinal disease.
- Enteropathy was associated with increased caspase-3, decreased CD3+ T cells, and more SIV-infected cells.
- Microbial translocation markers were unexpectedly low and did not correlate with intestinal disease or claudin-3 loss.
- Resilience to intestinal damage correlated with increased cytotoxic T-lymphocyte response.
Conclusions:
- SIV-induced enteropathy is not solely driven by microbial translocation.
- Early cART effectively prevents intestinal pathology in this model.
- Cytotoxic T-lymphocyte responses play a crucial role in protecting the gut from SIV-induced damage.

