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用于测量贴壁细胞牵引力的微加工硅橡胶弹性柱阵列

Microfabricated silicone elastomeric post arrays for measuring traction forces of adherent cells.

作者信息

Sniadecki Nathan J, Chen Christopher S

机构信息

Department of Bioengineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

Methods Cell Biol. 2007;83:313-28. doi: 10.1016/S0091-679X(07)83013-5.

Abstract

Nonmuscle cells exert biomechanical forces known as traction forces on the extracellular matrix (ECM). Spatial coordination of these traction forces against the ECM is in part responsible for directing cell migration, for remodeling the surrounding tissue scaffold, and for the folds and rearrangements seen during morphogenesis. The traction forces are applied through a number of discrete adhesions between a cell and the ECM. We have developed a device consisting of an array of flexible, microfabricated posts capable of measuring these forces under an adherent cell. Functionalizing the top of each post with ECM protein allows cells to attach and spread across the tops of the posts. Deflection of the tips of the posts is proportional to cell-generated traction forces during cell migration or contraction. In this chapter, we describe the microfabrication, preparation, and experimental use of such microfabricated post array detector system (mPADs).

摘要

非肌肉细胞会对细胞外基质(ECM)施加一种称为牵引力的生物力学力。这些牵引力与ECM的空间协调在一定程度上负责引导细胞迁移、重塑周围组织支架以及形态发生过程中出现的褶皱和重排。牵引力是通过细胞与ECM之间的一些离散黏附来施加的。我们开发了一种由一系列柔性微加工柱组成的装置,能够在贴壁细胞下方测量这些力。用ECM蛋白对每个柱的顶部进行功能化处理,可使细胞附着并在柱的顶部铺展。在细胞迁移或收缩过程中,柱尖的偏转与细胞产生的牵引力成正比。在本章中,我们描述了这种微加工柱阵列检测系统(mPADs)的微加工、制备及实验应用。

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