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Physico-mechanical aspects of extracellular matrix influences on tumorigenic behaviors.

机译:细胞外基质的物理力学方面影响致瘤行为。

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Tumor progression in vitro has traditionally been studied in the context of two-dimensional (2D) environments. However, it is now well accepted that 2D substrates are unnaturally rigid compared to the physiological substrate known as extracellular matrix (ECM) that is in direct contact with both normal and tumorigenic cells in vivo. Hence, the patterns of interactions, as well as the strategies used by cells in order to penetrate the ECM, and migrate through a three-dimensional (3D) environment are notoriously different than those observed in 2D. Several substrates, such as collagen I, laminin, or complex mixtures of ECM components have been used as surrogates of native 3D ECM to more accurately study cancer cell behaviors. In addition, 3D matrices developed from normal or tumor-associated fibroblasts have been produced to recapitulate the mesenchymal 3D environment that assorted cells encounter in vivo. Some of these substrates are being used to evaluate physico-mechanical effects on tumor cell behavior. Physiological 3D ECMs exhibit a wide range of rigidities amongst different tissues while the degree of stromal stiffness is known to change during tumorigenesis. In this review we describe some of the physico-mechanical characteristics of tumor-associated ECMs believed to play important roles in regulating epithelial tumorigenic behaviors.
机译:传统上在二维(2D)环境中研究了体外肿瘤进展。但是,现在已经公认2D底物与被称为细胞外基质(ECM)的生理底物相比具有非自然刚性,该生理底物与体内正常细胞和致瘤细胞直接接触。因此,众所周知,相互作用的模式以及细胞用于穿透ECM并通过三维(3D)环境迁移的策略与2D中观察到的完全不同。几种底物(例如胶原蛋白I,层粘连蛋白或ECM成分的复杂混合物)已用作天然3D ECM的替代物,以更准确地研究癌细胞的行为。另外,已经产生了从正常或与肿瘤相关的成纤维细胞发育的3D基质,以概括各种细胞在体内遇到的间质3D环境。这些底物中的一些被用于评估对肿瘤细胞行为的物理机械作用。生理3D ECM在不同组织之间表现出广泛的刚度,而基质刚度的程度在肿瘤发生过程中会发生变化。在这篇综述中,我们描述了与肿瘤相关的ECM的一些物理力学特征,这些ECM在调节上皮致瘤行为中起着重要的作用。

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