Role of Innate Immunity and Microbiome in the Inflammation of Aging and Long-Term Antiretroviral Therapy Summary Inflammaging, characteristic of persistent systemic inflammation in the aging population, has been linked to frailty syndrome with increased risk of cardiovascular disease, impaired mobility, cancer, cognitive decline, and immunosenescence. Similarities between inflammaging and the course of treated HIV infections, including chronic inflammation associated with gut epithelial barrier damage and microbial translocation, suggest that HIV infection compresses the aging process, accelerating the development of comorbidities and frailty. Type- 17 immune cells that express the transcription factor ROR?t and type-17 cytokines (IL17A, IL22, etc.) are critical for a healthy gut barrier function and maintenance of mucosal immune and microbial homeostasis, and function by stimulating neutrophil recruitment, epithelial cell proliferation, production of tight junction proteins and anti-microbial defensins. Others and we have found that innate CD161+ T cells are a potent source of IL- 17 and are enriched in the gut mucosa. The first goal of this study is to determine the relationship of systemic inflammation with the functions of innate type-17 immune cells (including innate T cells and innate lymphoid cells) and the gut microbial composition. Utilizing the rhesus macaque model that most closely resembles human aging as well as HIV-AIDS, it will be examined whether plasma biomarkers of inflammation are associated with the immune signature of innate type-17 cells and fecal microbiome in aging vs. young adult macaques. This will help describe an inflammaging phenotype based on inflammation-associated gut mucosal immune signature and microbiome of aging macaques. The second goal is to establish whether long-term ART in young adult macaques with or without SIV infection leads to inflammaging-associated perturbations in gut mucosal innate type-17 immunity and microbiome. This will establish whether similar or synergistic immune mechanisms of perturbations in gut mucosal homeostasis contribute to the phenomenon of accelerated aging in treated HIV infections and determine the factors associated with the inflammaging phenotype in long-term ART. These studies are relevant because they focus on understanding the immune mechanisms underlying inflammaging and HIV/ART-associated inflammation and whether HIV/ART-associated inflammation is accelerating the inflammaging process. The results of this study will provide valuable insights into the role of gut mucosal type-17 cells and its microbiome in local and systemic inflammation of aging and ART. This will open new avenues to explore the development of applications aimed at modulating mucosal innate immune cells along with probiotics to reduce inflammaging and the risk of frailty syndrome in aging and treated HIV infections.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Exploratory Grants (P20)
Project #
5P20GM103629-07
Application #
9507880
Study Section
Special Emphasis Panel (ZGM1)
Project Start
Project End
Budget Start
2018-06-01
Budget End
2019-05-31
Support Year
7
Fiscal Year
2018
Total Cost
Indirect Cost
Name
Tulane University
Department
Type
DUNS #
053785812
City
New Orleans
State
LA
Country
United States
Zip Code
70118
Jazwinski, S Michal; Jiang, James C; Kim, Sangkyu (2018) Adaptation to metabolic dysfunction during aging: Making the best of a bad situation. Exp Gerontol 107:87-90
Zhang, Qian; Chen, Yujue; Yang, Lu et al. (2018) Multitasking Ska in Chromosome Segregation: Its Distinct Pools Might Specify Various Functions. Bioessays 40:
Kim, Sangkyu; Jazwinski, S Michal (2018) The Gut Microbiota and Healthy Aging: A Mini-Review. Gerontology 64:513-520
Boraas, Liana C; Pineda, Emma T; Ahsan, Tabassum (2018) Actin and myosin II modulate differentiation of pluripotent stem cells. PLoS One 13:e0195588
Sure, Venkata N; Sakamuri, Siva S V P; Sperling, Jared A et al. (2018) A novel high-throughput assay for respiration in isolated brain microvessels reveals impaired mitochondrial function in the aged mice. Geroscience 40:365-375
Akintunde, Akinjide R; Miller, Kristin S (2018) Evaluation of microstructurally motivated constitutive models to describe age-dependent tendon healing. Biomech Model Mechanobiol 17:793-814
Kim, Sangkyu; Wyckoff, Jennifer; Morris, Anne-T et al. (2018) DNA methylation associated with healthy aging of elderly twins. Geroscience 40:469-484
Zhang, Yiwei; Zeng, Shelya X; Hao, Qian et al. (2017) Monitoring p53 by MDM2 and MDMX is required for endocrine pancreas development and function in a spatio-temporal manner. Dev Biol 423:34-45
Molinski, Steven V; Shahani, Vijay M; MacKinnon, Stephen S et al. (2017) Computational proteome-wide screening predicts neurotoxic drug-protein interactome for the investigational analgesic BIA 10-2474. Biochem Biophys Res Commun 483:502-508
Guo, Weichao; Saito, Shigeki; Sanchez, Cecilia G et al. (2017) TGF-?1 stimulates HDAC4 nucleus-to-cytoplasm translocation and NADPH oxidase 4-derived reactive oxygen species in normal human lung fibroblasts. Am J Physiol Lung Cell Mol Physiol 312:L936-L944

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