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Physical Biology in Cancer. 5. The rocky road of metastasis: the role of cytoskeletal mechanics in cell migratory response to 3D matrix topography

机译:癌症中的物理生物学。 5.转移的坎road之路:细胞骨架力学在细胞迁移对3D矩阵形貌的反应中的作用

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摘要

The tumor microenvironment is a milieu of heterogeneous architectural features that affect tumor growth and metastatic invasion. Pore size, density, stiffness, and fiber architecture change dramatically from location to location throughout the tumor matrix. While many studies have addressed the effects of two-dimensional extracellular matrix structure and composition on cell migration, less is known about how cancer cells navigate complex, heterogeneous three-dimensional (3D) microenvironments. Mechanical structures such as actin and keratin, part of the cytoskeletal framework, and lamins, part of the nucleoskeletal framework, play a key role in migration and are altered during cancer progression. Recent evidence suggests that these changes in cytoskeletal and nucleoskeletal structures may enable cancer cells to efficiently respond to features such as pore size and stiffness to invade and migrate. Here we discuss the role of cell mechanics and the cytoskeleton in the ability of cells to navigate and respond to 3D matrix features and heterogeneities.
机译:肿瘤微环境是影响肿瘤生长和转移侵袭的异质结构特征的环境。在整个肿瘤基质中,孔的大小,密度,刚度和纤维结构会在不同位置之间发生巨大变化。尽管许多研究都针对二维细胞外基质结构和组成对细胞迁移的影响,但对于癌细胞如何在复杂的异质三维(3D)微环境中导航的了解却很少。机械结构,例如肌动蛋白和角蛋白,是细胞骨架的一部分,而lamins,是核骨架的一部分,在迁移中起关键作用,并在癌症进展过程中发生改变。最近的证据表明,细胞骨架和核骨架结构的这些变化可能使癌细胞能够有效响应诸如孔径和刚度之类的特征,以侵入和迁移。在这里,我们讨论细胞力学和细胞骨架在细胞导航和响应3D矩阵特征和异质性的能力中的作用。

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