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The Role of the Optical Stretcher Is Crucial in the Investigation of Cell Mechanics Regulating Cell Adhesion and Motility

机译:光学担架的作用在调节细胞粘附和运动的细胞力学研究中至关重要。

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The mechanical properties of cells, tissues and the surrounding extracellular matrix environment play important roles in the process of cell adhesion and migration. In physiological and pathological processes of the cells, such as wound healing and cancer, the capacity to migrate through the extracellular matrix is crucial. Hence biophysical techniques were used to determine the mechanical properties of cells that facilitate the various migratory capacities. Since the field of mechanobiology is rapidly growing, the reliable and reproducible characterization of cell mechanics is required that facilitates the adhesion and migration of cells. One of these cell mechanical techniques is the optical stretching device, which was originally developed to investigate the mechanical properties of cells, such as the deformation of single cells in suspension. After discussing the strengths and weaknesses of the technology, the latest findings in optical stretching-based cell mechanics are presented in this review. Finally, the mechanical properties of cells are correlated with their migratory potential and it is pointed out how the inhibition of biomolecules that contribute to the to the maintenance of cytoskeletal structures in cells affect their mechanical deformability.
机译:细胞,组织和周围细胞外基质环境的机械特性在细胞粘附和迁移过程中起着重要作用。在细胞的生理和病理过程中,例如伤口愈合和癌症,迁移穿过细胞外基质的能力至关重要。因此,使用生物物理技术来确定促进各种迁移能力的细胞的机械特性。由于机械生物学领域正在迅速发展,因此需要可靠且可再现的细胞力学表征,以促进细胞的粘附和迁移。这些细胞机械技术之一是光学拉伸装置,最初是为了研究细胞的机械性能,例如悬浮中单个细胞的变形而开发的。在讨论了该技术的优缺点之后,本综述介绍了基于光学拉伸的细胞力学的最新发现。最后,细胞的机械特性与其迁移潜能相关,并指出抑制生物分子如何有助于维持细胞中的细胞骨架结构,从而影响其机械变形能力。

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