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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
SHIV-C109p5 NHP induces rapid disease progression in elderly macaques with extensive GI viral replication
Deepanwita Bose1, Nihar Deb Adhikary1, Peng Xiao1
1New Iberia Research Center, University of Louisiana at Lafayette, New Iberia, Louisiana, USA.
Abstract:
CCR5-tropic simian/human immunodeficiency viruses (SHIV) with clade C transmitted/founder envelopes represent a critical tool for the investigation of HIV experimental vaccines and microbicides in nonhuman primates, although many such isolates lead to spontaneous viral control post infection. Here, we generated a high-titer stock of pathogenic SHIV-C109p5 by serial passage in two rhesus macaques (RM) and tested its virulence in aged monkeys. The co-receptor usage was confirmed before infecting five geriatric rhesus macaques (four female and one male). Plasma viral loads were monitored by reverse transcriptase-quantitative PCR (RT-qPCR), cytokines by multiplex analysis, and biomarkers of gastrointestinal damage by enzyme-linked immunosorbent assay. Antibodies and cell-mediated responses were also measured. Viral dissemination into tissues was determined by RNAscope. Intravenous SHIV-C109p5 infection of aged RMs leads to high plasma viremia and rapid disease progression; rapid decrease in CD4+ T cells, CD4+CD8+ T cells, and plasmacytoid dendritic cells; and wasting necessitating euthanasia between 3 and 12 weeks post infection. Virus-specific cellular immune responses were detected only in the two monkeys that survived 4 weeks post infection. These were Gag-specific TNFα+CD8+, MIP1β+CD4+, Env-specific IFN-γ+CD4+, and CD107a+ T cell responses. Four out of five monkeys had elevated intestinal fatty acid binding protein levels at the viral peak, while regenerating islet-derived protein 3α showed marked increases at later time points in the three animals surviving the longest, suggesting gut antimicrobial peptide production in response to microbial translocation post infection. Plasma levels of monocyte chemoattractant protein-1, interleukin-15, and interleukin-12/23 were also elevated. Viral replication in gut and secondary lymphoid tissues was extensive.IMPORTANCESimian/human immunodeficiency viruses (SHIV) are important reagents to study prevention of virus acquisition in nonhuman primate models of HIV infection, especially those representing transmitted/founder (T/F) viruses. However, many R5-tropic SHIV have limited fitness in vivo leading to many monkeys spontaneously controlling the virus post acute infection. Here, we report the generation of a pathogenic SHIV clade C T/F stock by in vivo passage leading to sustained viral load set points, a necessity to study pathogenicity. Unexpectedly, administration of this SHIV to elderly rhesus macaques led to extensive viral replication and fast disease progression, despite maintenance of a strict R5 tropism. Such age-dependent rapid disease progression had previously been reported for simian immunodeficiency virus but not for R5-tropic SHIV infections.
Insights
We created a pathogenic simian/human immunodeficiency virus (SHIV) stock to study HIV vaccines. Aged rhesus macaques infected with this SHIV showed rapid disease progression, highlighting age-related susceptibility in nonhuman primate models.
Area of Science:
- Virology
- Immunology
- Infectious Diseases
Background:
- Simian/human immunodeficiency viruses (SHIV) are crucial for HIV vaccine and microbicide research in nonhuman primates.
- Many CCR5-tropic SHIV isolates exhibit limited in vivo fitness, leading to spontaneous viral control, hindering pathogenicity studies.
Purpose of the Study:
- To generate a high-titer, pathogenic SHIV clade C transmitted/founder (T/F) stock for virulence assessment in aged rhesus macaques.
- To investigate the impact of aging on SHIV infection progression and host immune responses.
Main Methods:
- Serial passage of SHIV-C109p5 in rhesus macaques to generate a high-titer stock.
- Infection of geriatric rhesus macaques with the SHIV-C109p5 stock.
- Monitoring of viral loads, cytokine profiles, gastrointestinal damage biomarkers, and immune responses (antibody and cell-mediated).
- Assessment of viral dissemination in tissues using RNAscope.
Main Results:
- Intravenous SHIV-C109p5 infection in aged rhesus macaques resulted in high viremia and rapid disease progression, including significant CD4+ T cell depletion.
- Disease progression necessitated euthanasia between 3 and 12 weeks post-infection.
- Virus-specific cellular immune responses were detected only in monkeys surviving over 4 weeks.
- Elevated biomarkers for gastrointestinal damage and microbial translocation were observed, alongside increased plasma inflammatory cytokines.
- Extensive viral replication occurred in gut and lymphoid tissues.
Conclusions:
- The generated pathogenic SHIV-C109p5 stock effectively causes rapid disease progression in aged rhesus macaques.
- Elderly rhesus macaques exhibit accelerated SHIV disease progression, a phenomenon previously noted for SIV but not extensively for R5-tropic SHIV.
- This model provides a valuable tool for studying HIV pathogenesis and interventions, particularly concerning age-related vulnerabilities.
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