4.7 Article

Fibroblast growth factor receptor 2 promotes the proliferation, migration, and invasion of ectopic stromal cells via activation of extracellular-signal-regulated kinase signaling pathway in endometriosis

Journal

BIOENGINEERED
Volume 13, Issue 4, Pages 8360-8371

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/21655979.2022.2054207

Keywords

Endometriosis; ectopic stromal cell; FGFR2; ERK signaling

Funding

  1. Shandong Province key research and development project: Yishen Tiaojing Prescription regulates Mir-21-mediated granulosa cell apoptosis to improve ovarian reserve function decline [2019GSF108197]

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Endometriosis is characterized by the presence of endometrial tissues with cancer-like features in extrauterine locations. FGFR2 plays a crucial role in endometriosis by promoting cell proliferation, invasion, and EMT in ectopic stromal cells. The effects of FGFR2 on endometriosis are mediated through the activation of the ERK signaling pathway.
Endometriosis is defined as the presence of endometrial tissues with cancer-like features in extrauterine locations. Fibroblast growth factor receptor 2 (FGFR2) is a tyrosine kinase that is involved in cancer pathogenesis. This study aimed to determine the role of FGFR2 in endometriosis. A total of 29 pairs of ectopic and eutopic endometrial tissues were collected from women with endometriosis. Endometrial tissues from women with hysteromyomas were considered as normal controls. Primary ectopic stromal cells (ESCs) were isolated from the ectopic endometrium. The role of FGFR2 in ESCs was assessed using immunohistochemistry, polymerase chain reaction, cell counting kit-8 assay, EdU staining, flow cytometry, transwell assay, and western blotting. The following signaling pathways were detected using bioinformatic analysis and confirmed in vitro. By searching the GSE171154, GSE86543, and GSE77182 datasets, FGFR2 was identified as an upregulated overlapping gene in endometriosis. Compared to eutopic and normal endometria, FGFR2 was highly expressed in ectopic tissues. Transfection of primary ESCs with FGFR2 small interfering RNA (siRNA) repressed the viability and proliferation of cells and induced apoptosis. FGFR2 siRNA inhibited the migration, invasion, and transforming growth factor-beta 1-triggered epithelial-mesenchymal transition (EMT). Extracellular signal-regulated kinase (ERK) signaling was found to be a downstream signaling pathway for FGFR2. The ERK1/2 inhibitor PD98059 was found to reverse the promoting effects of FGFR2 on ESC proliferation and invasion. FGFR2 silencing effectively inhibited the growth, migration, invasion, and EMT of ESCs. The effects of FGFR2 on endometriosis might be mediated via the activation of ERK signaling.

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