首页> 外文会议>ASME summer bioengineering conference;SBC2009 >EXAMINING ADAPTIVE EXTRACELLULAR RESPONSES OF LIVING CELLS UNDER MECHANICAL STIMULATION THROUGH PROBING FIBRONECTIN RESPONSE
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EXAMINING ADAPTIVE EXTRACELLULAR RESPONSES OF LIVING CELLS UNDER MECHANICAL STIMULATION THROUGH PROBING FIBRONECTIN RESPONSE

机译:通过探究纤维连蛋白的反应研究机械刺激下活细胞的适应性细胞外反应

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The extracellular matrix (ECM) has been shown to be an important cellular component due to the structural support it provides. This extracellular component has been linked to wound healing, cell adhesion, blood coagulation, cell differentiation and migration, maintenance of the cellular cytoskeleton, and tumor metastasis. Many studies have investigated the effects of the ECM protein, fibronectin, and its assembly and structural organization through chemical stimulation, but few have probed its link to mechanics. As cells alter their extracellular environment through fibronectin modulation and secretion, we examined this link to examine how cells alter their extracellular environment in response to applied mechanical stress. These results indicate the importance of mechanics in fibronectin organization and have implications in a variety of fields including mechanotransduction, biophysics and bioengineering.
机译:由于其提供的结构支持,细胞外基质(ECM)已显示为重要的细胞成分。这种细胞外成分与伤口愈合,细胞粘附,血液凝固,细胞分化和迁移,细胞骨架的维持以及肿瘤转移有关。许多研究已经通过化学刺激研究了ECM蛋白,纤连蛋白及其组装和结构组织的作用,但很少有人探讨其与力学的联系。当细胞通过纤连蛋白调节和分泌改变细胞外环境时,我们检查了这一联系,以研究细胞如何响应所施加的机械应力而改变细胞外环境。这些结果表明了力学在纤连蛋白组织中的重要性,并在机械转导,生物物理学和生物工程等多个领域产生了影响。

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