Single-cell RNA sequencing reveals the local cell landscape in mouse epididymal initial segment during aging

Author:

Zhuang Jintao,Li Xiangping,Yao Jiahui,Sun Xiangzhou,Liu Jiumin,Nie Hua,Hu Yang,Tu Xiangan,Liu Huang,Qin Weibing,Xie Yun

Abstract

AbstractBackgroundMorphological and functional alterations in aging reproductive organs result in decreased male fertility. The epididymis functions as the transition region for post-testicular sperm maturation. And we have previously demonstrated that the epididymal initial segment (IS), a region of the reproductive tract essential for sperm maturation and capacitation, undergoes considerable histological changes and chronic immune activation in mice during aging. However, the local aging-associated cellular and molecular changes in the aged epididymal IS are poorly understood.ResultsWe conducted single-cell RNA sequencing analysis on the epididymal IS of young (3-month-old) and old (21-month-old) mice. In total, 10,027 cells from the epididymal IS tissues of young and old mice were obtained and annotated. The cell composition, including the expansion of a principal cell subtype andMs4a4bHiMs4a6bHiT cells, changed with age. Aged principal cells displayed multiple functional gene expression changes associated with acrosome reaction and sperm maturation, suggesting an asynchronous process of sperm activation and maturation during epididymal transit. Meanwhile, aging-related altered pathways in immune cells, especially the “cell chemotaxis” inCx3cr1Hiepididymal dendritic cells (eDCs), were identified. The monocyte-specific expression of chemokineCcl8increased with age in eDCs. And the aged epididymal IS showed increased inflammatory cell infiltration and cytokine secretion. Furthermore, cell–cell communication analysis indicated that age increased inflammatory signaling in the epididymal IS.ConclusionContrary to the general pattern of lower immune responses in the male proximal genital tract, we revealed an inflammaging status in mouse epididymal initial segment. These findings will allow future studies to enable the delay of male reproductive aging via immune regulation.

Funder

National Natural Science Foundation of China

Guangdong Basic and Applied Basic Research Foundation

the Open project of the Key Laboratory of Male Reproduction and Genetics of the National Health Commission

the Guangdong Medical Research Fund

Basic and Applied Basic Research Foundation of Guangdong Province

Guangdong Provincial Reproductive Science Institute Innovation Team grants

Publisher

Springer Science and Business Media LLC

Subject

Aging,Immunology

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