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Physical and chemical microenvironmental cues orthogonally control the degree and duration of fibrosis-associated epithelial-to-mesenchymal transitions

机译:物理和化学微环境提示正交控制纤维化相关上皮 - 间充质转换的程度和持续时间

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摘要

Increased tissue stiffness and epithelial-to-mesenchymal transitions (EMTs) are two seemingly discrete hallmarks of fibrotic diseases. Despite recent findings highlighting the influence of tissue mechanical properties on cell phenotype, it remains unclear what role increased tissue stiffness has in the regulation of previously reported fibronectin-mediated EMTs associated with pulmonary fibrosis. Nano-indentation testing of lung interstitial spaces showed that in vivo cell-level Young’s moduli increase with the onset of fibrosis from 2 to 17 kPa. In vitro, we found that stiff, but not soft, fibronectin substrates induce EMT, a response dependent on cell contraction-mediated integrin activation of TGFβ. Activation or suppression of cell contractility with exogenous factors was sufficient to overcome the effect of substrate stiffness. Pulse-chase experiments indicate that the effect of cell contractility is dose- and time-dependent. In response to low levels of TGFβ on soft surfaces, either added exogenously or produced through thrombin-induced contraction, cells will initiate the EMT programme, but upon removal revert to an epithelial phenotype. These results identify matrix stiffness and/or cell contractility as critical targets for novel therapeutics for fibrotic diseases.
机译:增加的组织硬度和上皮-间质转化(EMT)是纤维变性疾病的两个看似离散的特征。尽管最近的研究结果突出了组织力学性质对细胞表型的影响,但仍不清楚组织硬度的增加在调控先前报道的与肺纤维化相关的纤连蛋白介导的EMT中的作用。肺间隙空间的纳米压痕测试显示,随着纤维化的发生,从2到17 kPa,体内细胞水平的杨氏模量增加。在体外,我们发现坚硬而不是柔软的纤连蛋白底物会诱导EMT,该反应取决于细胞收缩介导的TGFβ整合素激活。用外源性因子激活或抑制细胞收缩力足以克服底物刚度的影响。脉冲追踪实验表明,细胞收缩性的影响是剂量和时间依赖性的。响应于软表面上低水平的TGFβ(外源添加或通过凝血酶诱导的收缩产生),细胞将启动EMT程序,但在去除后恢复为上皮表型。这些结果表明基质刚度和/或细胞收缩性是纤维化疾病新疗法的关键目标。

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