[No authors listed]
Intrauterine adhesions (IUAs) are caused by endometrial damage and are associated with a poor pregnancy prognosis including infertility, oligomenorrhea and recurrent pregnancy loss. Understanding the pathogenesis of IUAs may help prevent and treat this condition more effectively. The aim of the current study was to investigate the function of microRNAâ1291 (miRâ1291) during the development of IUAs following endometrial damage and elucidate the potential molecular mechanisms involved. The expression of Rho GTPase activating protein 29 (ArhGAP29), a putative target mRNA of miRâ1291, was determined by immunohistochemical staining of human endometrial tissue from patients with IUAs and compared with normal endometrial tissues. ArhGAP29 expression was significantly decreased in endometrial tissues with IUAs compared with normal endometrium. Additionally, a murine IUAs model was develo-ped and reverse transcriptionâquantitative polymerase chain reaction (RTâqPCR) demonstrated that miRâ1291 levels were significantly increased in the uterine tissue and plasma of the IUAs group compared with the normal mice. Furthermore, an miRâ1291 antagomir was injected into the uterine cavity of experimental IUAs mice to block miRâ1291. Hematoxylin and eosin and Masson's stain revealed that blocking miRâ1291 significantly ameliorated endometrial fibrosis. Furthermore, levels of epithelial mesenchymal transition (EMT)âassociated proteins, and ArhGAP29âRhoA/Rhoâassociated coiled coil containing protein kinase 1 (ROCK1) were measured in uterine tissue by western blot, RTâqPCR analysis and immunofluorescence staining. Levels of the mesenchymal marker proteins, vimentin and Nâcadherin, were increased in the IUAs group mice, accompanied by a relative decrease in the epithelial marker proteins, cytokeratin and Eâcadherin compared with normal murine endometrium. miRâ1291 inhibition decreased RhoA/ROCK1 expression in the EMT pathway, but increased ArhGAP29 expression. Taken together, the findings indicate that miRâ1291 acts upstream of ArhGAP29 to negatively regulate the RhoA/ROCK1 EMT pathway, ultimately leading to endometrial fibrosis. These studies may provide new potential therapeutic options and pave the way to use circulating miRâ1291 as a clinical biomarker of endometrial fibrosis.
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