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Gene Editing of Primary Rhesus Macaque B Cells
Published on: February 10, 2023
Pathogenic SIV infection is associated with acceleration of epigenetic age in rhesus macaques
Anna J Jasinska1,2, Ranjit Sivanandham1,2, Sindhuja Sivanandham1,2
1Division of Infectious Diseases, Department of Medicine and.
Abstract:
HIV infection accelerates biological aging, but the contribution of the host's age to this process is unknown. We investigated the influence of SIV infection in macaques (SIVmac) on the risk of comorbidities and aging in young and old rhesus macaques (RMs) by assessing pathogenesis markers, DNA methylation-based epigenetic age (EA), and EA acceleration (EAA) in blood and tissues. Initially, upon SIV infection, the young RMs showed greater resilience to CD4+ T cell depletion, better control of T cell activation, hypercoagulation, and excessive inflammation, yet this resilience was progressively lost in the advanced stages of infection. During the late stages of infection, the young RMs, but not the aged ones, showed an increase in EA in PBMCs; also, EAA in the cerebellum and heart of young RMs was higher compared with old RMs. SIV infection was more pathogenic in aged animals in early stages, leading to a more rapid disease progression; however, accelerated aging mostly affected young animals, so that the levels of multiple key pathogenesis markers in the young RMs converged toward those specific to aged ones in the late stages of infection. We conclude that SIV infection-driven age acceleration is tissue specific, and that host age influences the susceptibility of different tissues to enhanced aging.
Insights
Simian immunodeficiency virus (SIV) infection accelerates aging in young macaques, particularly in specific tissues. Host age influences how tissues respond to SIV-driven age acceleration and associated comorbidities.
Area of Science:
- Immunology
- Aging Research
- Virology
Background:
- Human immunodeficiency virus (HIV) accelerates biological aging.
- The impact of host age on HIV-associated aging is not well understood.
- Simian immunodeficiency virus (SIV) in macaques serves as a model for HIV infection.
Purpose of the Study:
- To investigate how SIV infection influences comorbidities and aging in young versus old rhesus macaques (RMs).
- To assess the role of host age in SIV-induced epigenetic age acceleration (EAA).
Main Methods:
- Assessed pathogenesis markers, DNA methylation-based epigenetic age (EA), and EAA in blood and tissues of young and old RMs post-SIV infection.
- Compared immune responses, coagulation, inflammation, and EA/EAA between age groups during infection.
Main Results:
- Young RMs initially showed resilience to SIV but lost it in later stages, with increased EA in PBMCs and higher EAA in the cerebellum and heart.
- Aged RMs experienced more rapid disease progression in early SIV stages.
- Late-stage SIV infection led to convergence of pathogenesis markers in young RMs towards those of aged RMs.
Conclusions:
- SIV infection-driven age acceleration is tissue-specific.
- Host age significantly influences tissue susceptibility to SIV-induced aging and pathogenesis.
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