Central Tolerance is Impaired in the Middle-aged Thymic Environment
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One of the earliest hallmarks of immune aging is thymus involution, which not only reduces the number of newly generated and exported T cells, but also alters the composition and organization of the thymus microenvironment. Thymic T-cell export continues into adulthood, yet the impact of thymus involution on the quality of newly generated T-cell clones is not well established. Notably, the number and proportion of medullary thymic epithelial cells (mTECs) and expression of tissue-restricted antigens (TRAs) decline with age, suggesting the involuting thymus may not promote efficient central tolerance. Here, we demonstrate that the middle-aged thymic environment does not support rapid motility of medullary thymocytes, potentially diminishing their ability to scan antigen presenting cells (APCs) that display the diverse self-antigens that induce central tolerance. Consistent with this possibility, thymic slice assays reveal that the middle-aged thymic environment does not support efficient negative selection or regulatory T-cell (Treg) induction of thymocytes responsive to either TRAs or ubiquitous self-antigens. This decline in central tolerance is not universal, but instead impacts lower-avidity self-antigens that are either less abundant or bind to TCRs with moderate affinities. Additionally, the decline in thymic tolerance by middle age is accompanied by both a reduction in mTECs and hematopoietic APC subsets that cooperate to drive central tolerance. Thus, age-associated changes in the thymic environment result in impaired central tolerance against moderate-avidity self-antigens, potentially resulting in export of increasingly autoreactive naive T cells, with a deficit of Treg counterparts by middle age.
Wedemeyer S, Jones N, Raza I, Green F, Xiao Y, Semwal M Nat Aging. 2025; .
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Klein L, Petrozziello E Nat Rev Immunol. 2024; 25(1):57-72.
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Kelly J, Bloodworth N, Shao Q, Shabanowitz J, Hunt D, Meiler J ACS Chem Biol. 2024; 19(9):1991-2001.
PMID: 39150956 PMC: 11420952. DOI: 10.1021/acschembio.4c00312.
The Proteostasis of Thymic Stromal Cells in Health and Diseases.
Liu T, Xia S Protein J. 2024; 43(3):447-463.
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Yang Z, Tian C, He Z, Zhu X, He J, Pan H Regen Ther. 2024; 27:126-169.
PMID: 38571892 PMC: 10988135. DOI: 10.1016/j.reth.2024.03.008.