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首页> 外文期刊>Cell death & disease. >Vascular endothelial growth factor 165 inhibits pro-fibrotic differentiation of stromal cells via the DLL4/Notch4/smad7 pathway
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Vascular endothelial growth factor 165 inhibits pro-fibrotic differentiation of stromal cells via the DLL4/Notch4/smad7 pathway

机译:血管内皮生长因子165通过DLL4 / NOTCH4 / SMAD7途径抑制基质细胞的Pro-Fibrotic分化

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摘要

Endometrial fibrosis is the main pathological feature of Asherman's syndrome (AS), which is the leading cause of uterine infertility. Much is known about the expression of VEGF165 in luminal/glandular epithelial cells and stromal cells of the endometrium in normal menstrual cycles; however, less is known about the role and mechanism of VEGF165 in endometrial fibrosis. Herein, we report that VEGF165 is a key regulator in endometrial stromal cells to inhibit α-SMA and collagen 1 expression. Compared to human control subjects, patients with AS exhibited decreased VEGF165 expression in the endometrium along with increased fibrotic marker expression and collagen production. A fibrotic phenotype was shown in both mice with conditional VEGF reduction and VEGF165-deleted endometrial stromal cells. Exogenous VEGF165 could suppress TGFβ1-induced α-SMA and collagen 1 expression in human primary endometrial stromal cells. However, this beneficial effect was hindered when the expression of smad7 or Notch4 was inhibited or when Notch signaling was blocked, suggesting that smad7 and Notch4 are essential downstream molecules for VEGFA functioning. Overall, our results uncover a clinical targeting strategy for VEGF165 to inhibit pro-fibrotic differentiation of stromal cells by inducing DLL4/Notch4/smad7, which paves the way for AS treatment.
机译:子宫内膜纤维化是asherman综合征(AS)的主要病理特征,这是子宫不孕症的主要原因。关于腔/腺上皮细胞中VEGF165的表达和正常月经循环中子宫内膜的基质细胞的表达众所周知;然而,较少关于VEGF165在子宫内膜纤维化中的作用和机制。在此,我们报告VEGF165是子宫内膜基质细胞中的关键调节剂,以抑制α-SMA和胶原1表达。与人类对策进行比较,患者在子宫内膜中表现出降低的VEGF165表达以及纤维化标记表达和胶原蛋白的产生增加。在具有条件VEGF还原和VEGF165缺失的子宫内膜基质细胞的两只小鼠中显示了纤维化表型。外源VEGF165可以抑制TGFβ1诱导的α-SMA和人初级子宫内膜基质细胞中的表达。然而,当抑制Smad7或Notch4的表达或阻断Notch信号传导时,这种有益效果受到阻碍,表明Smad7和Notch4是VEGFA功能的必要下游分子。总体而言,我们的结果揭示了VEGF165的临床靶向策略,通过诱导DLL4 / NOTCH4 / SMAD7来抑制基质细胞的促纤维化分化,这为治疗方式铺平了道路。

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