Decreased thrombospondin-1 impairs endometrial stromal decidualization in unexplained recurrent spontaneous abortion

Author:

Hu Jianing12,Qin Chuanmei12,Xu Yichi12,Liu Xueqing12,Wei Xiaowei3,Wu Jiayi12,Zhao Xiaomiao4,Chen Cailian5,Lin Yi3

Affiliation:

1. School of Medicine, The International Peace Maternity and Child Health Hospital, Shanghai Jiao Tong University , No. 910 Hengshan Road, Xuhui District, Shanghai 200030 , China

2. Shanghai Key Laboratory of Embryo Original Diseases , No. 910 Hengshan Road, Xuhui District, Shanghai 200030 , China

3. Shanghai Jiao Tong University Affiliated Sixth People's Hospital , No. 600 Yishan Road, Xuhui District, Shanghai 200030 , China

4. Department of Reproductive Medicine, Guangdong Provincial People’s Hospital, Guangdong Academy of Medical Sciences , No. 106 Zhongshan Second Road, Yuexiu District, Guangzhou 510080 , China

5. Department of Automation, Shanghai Jiao Tong University, Key Laboratory of System Control and Information Processing, Ministry of Education of China , No. 800 Dongchuan Road, Minhang District, Shanghai 201100 , China

Abstract

Abstract Inappropriate endometrial stromal decidualization has been implied as an important reason of many pregnancy-related complications, such as unexplained recurrent spontaneous abortion, preeclampsia, and intrauterine growth restriction. Here, we observed that thrombospondin-1, an adhesive glycoprotein, was significantly downregulated in endometrial decidual cells from patients with unexplained recurrent spontaneous abortion. The immortalized human endometrial stromal cell line was used to investigate the possible THBS1-mediated regulation of decidualization. In vitro experiments found that the expression level of THBS1 increased with the normal decidualization process. Knockdown of THBS1 could decrease the expression levels of prolactin and insulin-like growth factor binding protein-1, two acknowledged human decidualization markers, whereas THBS1 overexpression could reverse these effects. The RNA sequencing results demonstrated that the extracellular regulated protein kinases signaling pathway was potentially affected by the knockdown of THBS1. We further confirmed that the regulation of THBS1 on decidualization was achieved through the ERK signaling pathway by the treatment of inhibitors. Moreover, knockdown of THBS1 in pregnant mice could impair decidualization and result in an increased fetus resorption rate. Altogether, our study demonstrated a crucial role of THBS1 in the pathophysiological process of unexplained recurrent spontaneous abortion and provided some new insights into the research of pregnancy-related complications.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Innovative Research Team of High-level Local Universities in Shanghai

Guangdong Basic and Applied Basic Research Foundation

Shanghai Jiao Tong University Trans-Med Awards Research

Funds for Outstanding Newcomers, Shanghai Sixth People's Hospital

GDPH

Publisher

Oxford University Press (OUP)

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