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PMID: 41136751 Published · ppublish English

Single-cell analysis of human thymus and peripheral blood unveils the dynamics of T cell development and aging.

Nature aging ·Vol. 5 ·No. 12 ·2025-12-00

Deng Y, Peng Z, Ming K, Qiao X, Ye B, Liu Y, Wang H, Yang P, Zhang Y, Zhou K, Huang Q, Guo W, Xie Y, Chen H, Yu H, Lin L, Zou X, Wang K, Guan P, Dong B, Chen X, Wang X, Hu J, Wu Y, Zhang H, Hu H

Abstract

Age-related thymic involution increases vulnerability to cancers and infection in older adults, yet the driving mechanisms and its impact on peripheral T cells remain unclear. Using single-cell sequencing, we here analyzed 387,762 cells from human thymus and peripheral blood of young and aged individuals. Within thymus, we found aging reduced T-lineage potential in early thymic progenitors but increased innate lymphocyte lineage potential. Aged thymus were enriched in mature T cells with low SOX4 expression and inflammatory profiles but depleted of thymic epithelial cells and expression of tissue-restricted antigens. In the periphery, we identified transcriptional features of T cell aging and established a naive T cell-based model for immune age prediction. Furthermore, we identified CD38 as a marker of recent thymic emigrants. Finally, single-cell T cell receptor (TCR) repertoire sequencing identified shifts in TCR repertoire diversity within memory/effector T cells and expanded virus-specific T cells during aging. Collectively, our data offer insights into human thymic involution and peripheral T cell aging and could inform strategies to restore compromised T cell immunity.

Article Info
Journal
Nature aging
Abbr.
Nat Aging
ISSN
2662-8465
Published
2025-12-00
Language
English
Country/Region
United States
NLM ID
101773306
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