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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
Specific pathogen-free status alters immunophenotype in rhesus macaques: implications for the study of simian
Rosemary V Santos1, Kuei-Chin Lin, Keith Mansfield
1New England Primate Research Center, Harvard Medical School, Southborough, Massachusetts 01772, USA.
Abstract:
The repertoire of viruses to which research primates are exposed, even in the absence of clinical disease, may contribute to experimental confounding. In this study we examined whether standard specific pathogen-free (SPF) rhesus macaques exposed to a wider spectrum of enzootic viruses and expanded SPF macaques derived to exclude a greater number of viral agents would display alterations in immune activation or immune cell populations. Given the impact of immunophenotype on human immunodeficiency virus (HIV) progression and the importance of the simian immunodeficiency virus (SIV) model for the study of HIV pathogenesis, we elected to additionally examine the impact of SPF status on the capacity of peripheral blood mononuclear cells (PBMCs) to support SIV replication. The expanded SPF group displayed significant immune alterations including increased serum interleukin (IL)-15 and a greater in vitro elaboration of GM-CSF, IL1ra, VEGF, IL-10, IL12/23, and MIP-1b. Consistent with reduced viral antigenic exposure in expanded SPF macaques, decreased CD4(+) and CD8(+) transitional and effector memory (T(EM)) cell populations were observed. Expanded SPF PBMC cultures also demonstrated an increased peak (192.61 ng/ml p27) and area under the curve in in vitro SIV production (1968.64 ng/ml p27) when compared to standard SPF macaques (99.32 ng/ml p27; p=0.03 and 915.17 ng/ml p27; p=0.03, respectively). In vitro SIV replication did not correlate with CD4(+) T(EM) cell counts but was highly correlated with serum IL-15 in the subset of animals examined. Findings suggest that an altered immunophenotype associated with the maintenance of primates under differing levels of bioexclusion has the potential to impact the outcome of SIV studies and models for which the measurement of immunologic endpoints is critical.
Insights
Research primates with expanded pathogen exclusion show altered immune profiles and increased susceptibility to simian immunodeficiency virus (SIV) replication, impacting HIV pathogenesis models.
Area of Science:
- Veterinary Immunology
- Primate Virology
- Immunological Research
Background:
- Research primates exposed to various viruses can lead to experimental confounding.
- Specific pathogen-free (SPF) status influences immune responses and viral susceptibility.
Purpose of the Study:
- To investigate immune alterations and simian immunodeficiency virus (SIV) replication capacity in standard SPF versus expanded SPF rhesus macaques.
- To assess the impact of differing bioexclusion levels on primate immunophenotype and SIV model outcomes.
Main Methods:
- Comparison of immune activation markers and cell populations between standard SPF and expanded SPF rhesus macaques.
- Assessment of in vitro SIV replication in peripheral blood mononuclear cells (PBMCs) from both groups.
- Correlation analysis between immunophenotype, serum cytokines, and SIV replication.
Main Results:
- Expanded SPF macaques exhibited increased serum IL-15 and greater in vitro elaboration of multiple cytokines (GM-CSF, IL1ra, VEGF, IL-10, IL12/23, MIP-1b).
- Reduced CD4(+) and CD8(+) transitional and effector memory (T(EM)) cell populations were observed in expanded SPF macaques.
- Expanded SPF PBMCs showed significantly higher in vitro SIV production compared to standard SPF macaques, correlated with serum IL-15.
Conclusions:
- Differing levels of bioexclusion in primate housing alter immunophenotype.
- Altered immunophenotypes can impact SIV replication and the validity of SIV/HIV pathogenesis models.
- Careful consideration of SPF status is crucial for studies relying on immunological endpoints.

