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测量受流体力作用下的活体内皮细胞中单根应力纤维的应变。

Measurements of strain on single stress fibers in living endothelial cells induced by fluid shear stress.

机构信息

Department of Bioengineering and Robotics, Graduate School of Engineering, Tohoku University, Tokyo, Japan.

出版信息

Biochem Biophys Res Commun. 2010 May 7;395(3):441-6. doi: 10.1016/j.bbrc.2010.04.051. Epub 2010 Apr 10.

Abstract

Fluid shear stress (FSS) acting on the apical surface of endothelial cells (ECs) can be sensed by mechano-sensors in adhesive protein complexes found in focal adhesions and intercellular junctions. This sensing occurs via force transmission through cytoskeletal networks. This study quantitatively evaluated the force transmitted through cytoskeletons to the mechano-sensors by measuring the FSS-induced strain on SFs using live-cell imaging for actin stress fibers (SFs). FSS-induced bending of SFs caused the SFs to align perpendicular to the direction of the flow. In addition, the displacement vectors of the SFs were detected using image correlation and the FSS-induced axial strain of the SFs was calculated. The results indicated that FSS-induced strain on SFs spanned the range 0.01-0.1% at FSSs ranging from 2 to 10 Pa. Together with the tensile property of SFs reported in a previous study, the force exerted on SFs was estimated to range from several to several tens of pN.

摘要

施加于内皮细胞(EC)顶表面的流体力(FSS)可通过位于黏着斑和细胞间连接处的黏附蛋白复合物中的机械感受器来感知。这种感应是通过细胞骨架网络中的力传递来实现的。本研究通过使用活细胞成像技术测量肌动蛋白应力纤维(SFs)上的 FSS 诱导应变,定量评估了通过细胞骨架传递到机械感受器的力。FSS 诱导的 SFs 弯曲导致 SFs 垂直于流动方向排列。此外,使用图像相关法检测了 SFs 的位移向量,并计算了 SFs 的 FSS 诱导轴向应变。结果表明,在 FSS 为 2 至 10 Pa 的范围内,SFs 上的 FSS 诱导应变范围为 0.01-0.1%。结合之前研究中报道的 SFs 的拉伸特性,施加于 SFs 的力估计在数皮牛到数十皮牛之间。

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