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Cell–Extracellular Matrix Mechanobiology: Forceful Tools and Emerging Needs for Basic and Translational Research

机译:细胞 - 细胞外基质力学生物学:基础和转化研究的有力工具和新兴需求

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摘要

Extracellular biophysical cues have a profound influence on a wide range of cell behaviors, including growth, motility, differentiation, apoptosis, gene expression, adhesion, and signal transduction. Cells not only respond to definitively mechanical cues from the extracellular matrix (ECM) but can also sometimes alter the mechanical properties of the matrix and hence influence subsequent matrix-based cues in both physiological and pathological processes. Interactions between cells and materials in vitro can modify cell phenotype and ECM structure, whether intentionally or inadvertently. Interactions between cell and matrix mechanics in vivo are of particular importance in a wide variety of disorders, including cancer, central nervous system injury, fibrotic diseases, and myocardial infarction. Both the in vitro and in vivo effects of this coupling between mechanics and biology hold important implications for clinical applications.
机译:细胞外生物物理线索对多种细胞行为具有深远影响,包括生长,运动,分化,凋亡,基因表达,粘附和信号转导。细胞不仅对来自细胞外基质(ECM)的确定性机械提示做出反应,而且有时还可以改变基质的机械特性,从而影响生理和病理过程中后续基于基质的提示。体外细胞与材料之间的相互作用可以有意或无意地改变细胞表型和ECM结构。体内细胞与基质力学之间的相互作用在包括癌症,中枢神经系统损伤,纤维化疾病和心肌梗塞在内的多种疾病中尤为重要。力学与生物学之间这种耦合的体外和体内作用对于临床应用都具有重要意义。

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