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Steps in Mechanotransduction Pathways that Control Cell Morphology

机译:控制细胞形态的机械障碍途径中的步骤

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It is increasingly clear that mechanotransduction pathways play important roles in regulating fundamental cellular functions. Of the basic mechanical functions, the determination of cellular morphology is critical. Cells typically use many mechanosensitive steps and different cell states to achieve a polarized shape through repeated testing of the microenvironment. Indeed, morphology is determined by the microenvironment through periodic activation of motility, mechanotesting, and mechanoresponse functions by hormones, internal clocks, and receptor tyrosine kinases. Patterned substrates and controlled environments with defined rigidities limit the range of cell behavior and influence cell state decisions and are thus very useful for studying these steps. The recently defined rigidity sensing process provides a good example of how cells repeatedly test their microenvironment and is also linked to cancer. In general, aberrant extracellular matrix mechanosensing is associated with numerous conditions, including cardiovascular disease, aging, and fibrosis, that correlate with changes in tissue morphology and matrix composition. Hence, detailed descriptions of the steps involved in sensing and responding to the microenvironment are needed to better understand both the mechanisms of tissue homeostasis and the pathomechanisms of human disease.
机译:越来越明显,机械手术途径在调节基本蜂窝功能方面发挥着重要作用。在基本的机械功能中,细胞形态的测定至关重要。细胞通常使用许多机械敏感步骤和不同的细胞状态来通过对微环境的重复测试来实现偏振形状。实际上,通过通过激素,内部钟表和受体酪氨酸激酶通过定期激活运动,机械力和机械响应来确定形态。具有限定刚性的图案化基板和受控环境限制了细胞行为的范围,并影响细胞状态决定,因此对于研究这些步骤非常有用。最近定义的刚性感测过程提供了细胞反复测试其微环境的良好示例,并且也与癌症相关联。通常,异常细胞外基质机械损伤与许多条件相关,包括心血管疾病,老化和纤维化,与组织形态和基质组合物的变化相关。因此,需要对感应和响应微环境的步骤的详细描述,以更好地了解组织稳态和人类疾病的土程机制。

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