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首页> 外文期刊>eLife journal >Transient external force induces phenotypic reversion of malignant epithelial structures via nitric oxide signaling
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Transient external force induces phenotypic reversion of malignant epithelial structures via nitric oxide signaling

机译:瞬时外力通过一氧化氮信号传导诱导恶性上皮结构表型逆转

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摘要

Non-malignant breast epithelial cells cultured in three-dimensional laminin-rich extracellular matrix (lrECM) form well organized, growth-arrested acini, whereas malignant cells form continuously growing disorganized structures. While the mechanical properties of the microenvironment have been shown to contribute to formation of tissue-specific architecture, how transient external force influences this behavior remains largely unexplored. Here, we show that brief transient compression applied to single malignant breast cells in lrECM stimulated them to form acinar-like structures, a phenomenon we term ‘mechanical reversion.’ This is analogous to previously described phenotypic ‘reversion’ using biochemical inhibitors of oncogenic pathways. Compression stimulated nitric oxide production by malignant cells. Inhibition of nitric oxide production blocked mechanical reversion. Compression also restored coherent rotation in malignant cells, a behavior that is essential for acinus formation. We propose that external forces applied to single malignant cells restore cell-lrECM engagement and signaling lost in malignancy, allowing them to reestablish normal-like tissue architecture.
机译:在富含层粘连蛋白的三维三维细胞外基质(lrECM)中培养的非恶性乳腺上皮细胞形成组织良好,生长受阻的腺泡,而恶性细胞则形成持续增长的杂乱无章的结构。虽然已经证明微环境的机械性质有助于组织特异性结构的形成,但暂时的外力如何影响这种行为仍未得到充分的探讨。在这里,我们表明对lrECM中的单个恶性乳腺癌细胞进行短暂的短暂压缩会刺激它们形成腺泡样结构,这种现象我们称为“机械逆转”。这类似于先前描述的使用致癌途径生化抑制剂的表型“逆转” 。压缩刺激恶性细胞产生一氧化氮。抑制一氧化氮的产生阻止了机械还原。压缩还恢复了恶性细胞中的连贯旋转,这是腺泡形成必不可少的行为。我们提出,施加于单个恶性细胞的外力可恢复细胞-lrECM参与并在恶性肿瘤中丧失信号传导,从而使它们能够重建正常组织结构。

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