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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Cell response to matrix mechanics: focus on collagen.
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Cell response to matrix mechanics: focus on collagen.

机译:细胞对基质力学的反应:专注于胶原蛋白。

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摘要

Many model systems and measurement tools have been engineered for observing and quantifying the effect of mechanics on cellular response. These have contributed greatly to our current knowledge of the molecular events by which mechanical cues affect cell biology. Cell responses to the mechanical properties of type 1 collagen gels are discussed, followed by a description of a model system of very thin, mechanically tunable collagen films that evoke similar responses from cells as do gel systems, but have additional advantages. Cell responses to thin films of collagen suggest that at least some of the mechanical cues that cells can respond to in their environment occur at the sub-micron scale. Mechanical properties of thin films of collagen can be tuned without altering integrin engagement, and in some cases without altering topology, making them useful in addressing questions regarding the roles of specific integrins in transducing or mitigating responses to mechanical cues. The temporal response of cells to differences in ECM may provide insight into mechanisms of signal transduction.
机译:已设计出许多模型系统和测量工具,用于观察和量化力学对细胞反应的影响。这些极大地促进了我们目前对分子提示影响细胞生物学的分子事件的认识。讨论了细胞对1型胶原蛋白凝胶的机械特性的反应,然后描述了非常薄的,机械可调的胶原蛋白膜的模型系统,该膜系统会像凝胶系统一样引起细胞类似的反应,但具有其他优势。细胞对胶原蛋白薄膜的反应表明,细胞可以在其环境中反应的至少一些机械线索是亚微米级的。可以调节胶原蛋白薄膜的机械性能,而无需改变整联蛋白的结合,在某些情况下,也可以改变拓扑结构,从而使它们可用于解决有关特定整联蛋白在转导或减轻对机械线索反应中的作用的问题。细胞对ECM差异的时间响应可能会深入了解信号转导机制。

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