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Effects of matrix stiffness on epithelial to mesenchymal transition-like processes of endometrial epithelial cells: Implications for the pathogenesis of endometriosis

机译:基质刚度对子宫内膜细胞结石转型过程的基质刚度:对子宫内膜异位症发病机制的影响

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Endometriosis is defined as the presence of endometrial glands and stroma within extrauterine sites. Our previous study revealed an epithelial to mesenchymal transition (EMT)-like process in red peritoneal endometriosis, whereas membrane localization of E-cadherin was well maintained in epithelial cells of deep infiltrating endometriosis (DIE). Here we show that endometrial epithelial cells (EEE) grown on polyacrylamide gel substrates (PGS) of 2 kilopascal (kPa), a soft matrix, initiate a partial EMT-like process with transforming growth factor-β1 (TGF-β1) stimulation. Increasing matrix stiffness with TGF-β1 stimulation reduced the number of cell-cell contacts. Cells that retained cell-cell contacts showed decreased expression of E-cadherin and zonula occludens 1 (ZO-1) to cell-cell junctions. Few deep endometriotic epithelial cells (DEE) grown on 30-kPa PGS, which may mimic in vivo tissue compliance of DIE, retained localization of E-cadherin to cell-cell junctions with TGF-β1 treatment. Immunohistochemical analysis showed no phosphorylated Smad 2/3 nuclear localization in E-cadherin+ epithelial cells of DIE. We hypothesize that EEE may undergo an EMT-like process after attachment of endometrium to peritoneum in a TGF-β1–rich microenvironment. However, TGF-β1 signaling may be absent in DIE, resulting in a more epithelial cell-like phenotype in a rigid microenvironment.
机译:子宫内膜异位症被定义为extrainterine位点内子宫内膜腺体和基质的存在。我们以前的研究表明,在红色腹膜内膜异位症中的间充质转变(EMT)的下皮,而E-Cadherin的膜定位在深浸润子宫内膜异位症(DIA)的上皮细胞中保持良好。在这里,我们表明,在2kAkopscal(KPA),软基质的聚丙烯酰胺凝胶基板(PGS)上生长的子宫内膜上皮细胞(EEE)引发了具有转化生长因子-β1(TGF-β1)刺激的部分EMT样方法。随着TGF-β1刺激的增加,基质刚度降低了细胞 - 细胞触点的数量。保留细胞 - 细胞触点的细胞显示出e-cadherin和zonula occludens1(zo-1)的表达降低,细胞 - 细胞结。在30-kPa pgs上生长的少数深内静脉肌上皮细胞(Dee),其可以模仿模具的体内组织顺应性,通过TGF-β1处理保留E-Cadherin的封闭性与细胞 - 细胞结合。免疫组织化学分析显示,在模具的e-cadherin +上皮细胞中没有磷酸化Smad 2/3核定位。我们假设EEE可以在富含TGF-β1的微环境中对腹膜内肿瘤到腹膜后进行EEE样过程。然而,TGF-β1信号可能不存在于模具中,导致刚性微环境中更具上皮细胞样表型。

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