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高通量 scRNA-Seq 揭示实验性自身免疫性睾丸炎诱导的间质细胞衰老的机制:间质纤维化和补体激活的重要作用。

High Throughput scRNA-Seq Provides Insights Into Leydig Cell Senescence Induced by Experimental Autoimmune Orchitis: A Prominent Role of Interstitial Fibrosis and Complement Activation.

机构信息

Institute of Reproductive Medicine, Medical School of Nantong University, Nantong, China.

NHC Key Laboratory of Male Reproduction and Genetics, Guangdong Provincial Reproductive Science Institute (Guangdong Provincial Fertility Hospital), Guangzhou, China.

出版信息

Front Immunol. 2022 Jan 17;12:771373. doi: 10.3389/fimmu.2021.771373. eCollection 2021.

Abstract

Leydig cells (Lc), located in the interstitial space of the testis between seminiferous tubules, produce 95% of testosterone in male individuals, which is pivotal for male sexual differentiation, spermatogenesis, and maintenance of the male secondary sex characteristics. Lc are prone to senescence in aging testes, resulting in compromised androgen synthesis capability upon aging. However, little is known about whether Lc undergo senescence in a chronic inflammatory environment. To investigate this question, mouse models of experimental autoimmune orchitis (EAO) were used, and Lc were analyzed by high throughput scRNA-Seq. Data were screened and analyzed by correlating signaling pathways with senescence, apoptosis, androgen synthesis, and cytokine/chemokine signaling pathways. EAO did induce Lc senescence, and Lc senescence in turn antagonized androgen synthesis. Based on the correlation screening of pathways inducing Lc senescence, a plethora of pathways were found to play potential roles in triggering Lc senescence during EAO, among which the and angiopoietin receptor pathways were highly correlated with senescence signature. Notably, complement and interstitial fibrosis activated by EAO worsened Lc senescence and strongly antagonized androgen synthesis. Furthermore, most proinflammatory cytokines enhanced both senescence and apoptosis in Lc and spermatogonia (Sg) during EAO, and proinflammatory cytokine antagonism of the glutathione metabolism pathway may be key in inducing cellular senescence during EAO.

摘要

间质细胞(Leydig cells,Lc)位于曲细精管之间的睾丸间质中,雄性个体中 95%的睾酮由其产生,这对于雄性性分化、精子发生和维持男性第二性征至关重要。衰老睾丸中的 Lc 容易衰老,导致随着年龄的增长雄激素合成能力受损。然而,目前尚不清楚 Lc 是否会在慢性炎症环境中发生衰老。为了研究这个问题,使用了实验性自身免疫性睾丸炎(experimental autoimmune orchitis,EAO)的小鼠模型,并通过高通量 scRNA-Seq 分析 Lc。通过将信号通路与衰老、细胞凋亡、雄激素合成以及细胞因子/趋化因子信号通路相关联,对数据进行筛选和分析。EAO 确实会诱导 Lc 衰老,而 Lc 衰老反过来又会拮抗雄激素合成。基于诱导 Lc 衰老的通路相关性筛选,发现许多通路在 EAO 期间触发 Lc 衰老中可能发挥作用,其中血管生成素受体通路与衰老特征高度相关。值得注意的是,EAO 激活的补体和间质纤维化会加重 Lc 衰老并强烈拮抗雄激素合成。此外,在 EAO 期间,大多数促炎细胞因子增强了 Lc 和精原细胞(spermatogonia,Sg)中的细胞衰老和细胞凋亡,而促炎细胞因子对谷胱甘肽代谢途径的拮抗作用可能是诱导 EAO 期间细胞衰老的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53ed/8801941/8670d0d41753/fimmu-12-771373-g001.jpg

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