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用于分析细胞-基质黏附处机械相互作用的柔性聚丙烯酰胺基质

Flexible polyacrylamide substrata for the analysis of mechanical interactions at cell-substratum adhesions.

作者信息

Beningo Karen A, Lo Chun-Min, Wang Yu-Li

机构信息

Department of Physiology, University of Massachusetts Medical School, Worcester, Massachusetts 01605, USA.

出版信息

Methods Cell Biol. 2002;69:325-39. doi: 10.1016/s0091-679x(02)69021-1.

Abstract

We have described a powerful tool for the study of mechanical interactions between cells and their physical environment. Although the approach has already been used in a variety of ways to measure traction forces and to characterize active and passive responses of cultured cells to mechanical stimulation, it can be extended easily and combined with other microscopic approaches, including fluorescent analog imaging (Beningo et al., 2001), photobleaching, calcium imaging, micromanipulation, and electrophysiology. This method will be particularly useful for studying the functions of various components at focal adhesions, and the effects of mechanical forces on focal adhesion-mediated signal transduction. In addition, the method can be extended to a 3D setting, e.g., by sandwiching cultured cells between two layers of polyacrylamide to create an environment mimicking that in the tissue of a multicellular organism. Whereas chemical interactions between cells and the environment have been investigated extensively, many important questions remain as to the role of physical forces in cellular functions and the interplay between chemical and physical mechanisms of communication. The present approach, as well as other approaches capable of probing physical interactions, should fill in this important gap in the near future.

摘要

我们已经描述了一种用于研究细胞与其物理环境之间机械相互作用的强大工具。尽管该方法已被以多种方式用于测量牵引力,并表征培养细胞对机械刺激的主动和被动反应,但它可以很容易地扩展并与其他显微方法相结合,包括荧光类似物成像(贝宁戈等人,2001年)、光漂白、钙成像、显微操作和电生理学。该方法对于研究粘着斑中各种成分的功能以及机械力对粘着斑介导的信号转导的影响将特别有用。此外,该方法可以扩展到三维环境,例如,通过将培养细胞夹在两层聚丙烯酰胺之间,以创建一个模拟多细胞生物体组织中的环境。虽然细胞与环境之间的化学相互作用已得到广泛研究,但关于物理力在细胞功能中的作用以及化学和物理通讯机制之间的相互作用,仍有许多重要问题有待解决。目前的方法以及其他能够探测物理相互作用的方法,应在不久的将来填补这一重要空白。

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