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首页> 外文期刊>Cancer Cell International >Biomechanical cell regulatory networks as complex adaptive systems in relation to cancer
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Biomechanical cell regulatory networks as complex adaptive systems in relation to cancer

机译:生物力学细胞调控网络作为与癌症相关的复杂适应系统

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Physiological structure and function of cells are maintained by ongoing complex dynamic adaptive processes in the intracellular molecular pathways controlling the overall profile of gene expression, and by genes in cellular gene regulatory circuits. Cytogenetic mutations and non-genetic factors such as chronic inflammation or repetitive trauma, intrinsic mechanical stresses within extracellular matrix may induce redirection of gene regulatory circuits with abnormal reactivation of embryonic developmental programmes which can now drive cell transformation and cancer initiation, and later cancer progression and metastasis. Some of the non-genetic factors that may also favour cancerization are dysregulation in epithelial-mesenchymal interactions, in cell-to-cell communication, in extracellular matrix turnover, in extracellular matrix-to-cell interactions and in mechanotransduction pathways. Persistent increase in extracellular matrix stiffness, for whatever reason, has been shown to play an important role in cell transformation, and later in cancer cell invasion. In this article we review certain cell regulatory networks driving carcinogenesis, focussing on the role of mechanical stresses modulating structure and function of cells and their extracellular matrices.
机译:细胞的生理结构和功能通过控制基因表达总体概况的细胞内分子途径中正在进行的复杂动态适应过程以及细胞基因调控电路中的基因来维持。细胞遗传突变和非遗传因素(例如慢性炎症或重复性创伤,细胞外基质内在的内在机械压力)可能会导致基因调控电路发生重定向,并伴随胚胎发育程序的异常重新激活,从而现在可以驱动细胞转化和癌症的发生,以及随后的癌症进展和转移。一些可能也助于癌变的非遗传因素是上皮-间质相互作用,细胞间通讯,细胞外基质更新,细胞外基质间相互作用和机械转导途径中的失调。无论出于何种原因,细胞外基质硬度的持续增加已显示在细胞转化以及后来的癌细胞侵袭中起重要作用。在本文中,我们回顾了某些驱动癌变的细胞调控网络,重点研究了机械应力调节细胞及其细胞外基质的结构和功能的作用。

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