TNFα/TNFR1 signal induces excessive senescence of decidua stromal cells in recurrent pregnancy loss

蜕膜化 蜕膜 间质细胞 衰老 蜕膜细胞 生物 细胞生物学 肿瘤坏死因子α 内分泌学 内科学 男科 癌症研究 胎盘 医学 怀孕 胎儿 遗传学
作者
Shanshan Zeng,Yingyu Liang,Siying Lai,Shilei Bi,Lijun Huang,Yulian Li,Weinan Deng,Pei Xu,Mingxing Liu,Zhongtang Xiong,Jingsi Chen,Zhaowei Tu,Dunjin Chen,Lili Du
出处
期刊:Journal of Reproductive Immunology [Elsevier BV]
卷期号:155: 103776-103776 被引量:9
标识
DOI:10.1016/j.jri.2022.103776
摘要

Defects in decidual response are associated with adverse pregnancy outcomes which includes recurrent pregnancy loss (RPL). It is reported that cellular senescence happens during decidualization and pro-senescent decidual response in the luteal phase endometrium is related to RPL. However, the underlying mechanisms of how excessive decidual senescence takes place in RPL decidua cells remain largely unexplored. The senescent phenotype of RPL decidua and tumor necrosis factor receptor 1(TNFR1) expression were analyzed by using our previously published single-cell sequencing dataset of decidua cells from 6 RPL and 5 matched normal decidua, which were further verified by PCR and WB in decidual tissues. Effects of TNFα on the decidual stromal cells (DSCs) senescence and underlying molecular pathways were analyzed using the in vitro decidualization model of human endometrial stromal cells (HESCs). We showed that decidual stroma cells from RPL patients exhibited transcriptomic features of cellular senescence by analysis of single-cell datasets. The TNFα level and TNFR1 expression were increased in RPL decidua tissues. Furthermore, in vitro cell model demonstrated that increased TNFα induced excessive senescence during decidualization and TNFR1/p53/p16 pathway mediates TNFα-induced stromal senescence. In addition, we also found that the expression of IGFBP1 was regulated by TNFα-TNFR1 interaction during decidualization. Taken together, the present findings suggest that the increased secretion of TNFα induced stromal cell excessive senescence in RPL decidua, which is mediated via TNFR1, and thus provide a possible therapeutic target for the treatment of RPL.

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