Aging promotes reorganization of the CD4 T cell landscape toward extreme regulatory and effector phenotypes.

Elyahu, Yehezqel; Hekselman, Idan; Eizenberg-Magar, Inbal; Berner, Omer; Strominger, Itai; Schiller, Maya; Mittal, Kritika; Nemirovsky, Anna et al. · Sci Adv · 2019

basic_science · Level V

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Abstract

Age-associated changes in CD4 T-cell functionality have been linked to chronic inflammation and decreased immunity. However, a detailed characterization of CD4 T cell phenotypes that could explain these dysregulated functional properties is lacking. We used single-cell RNA sequencing and multidimensional protein analyses to profile thousands of CD4 T cells obtained from young and old mice. We found that the landscape of CD4 T cell subsets differs markedly between young and old mice, such that three cell subsets-exhausted, cytotoxic, and activated regulatory T cells (aT<sub>regs</sub>)-appear rarely in young mice but gradually accumulate with age. Most unexpected were the extreme pro- and anti-inflammatory phenotypes of cytotoxic CD4 T cells and aT<sub>regs</sub>, respectively. These findings provide a comprehensive view of the dynamic reorganization of the CD4 T cell milieu with age and illuminate dominant subsets associated with chronic inflammation and immunity decline, suggesting new therapeutic avenues for age-related diseases.

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