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集体细胞迁移过程中的力与运动学映射

Mapping forces and kinematics during collective cell migration.

作者信息

Serra-Picamal Xavier, Conte Vito, Sunyer Raimon, Muñoz José J, Trepat Xavier

机构信息

Institute for Bioengineering of Catalonia, Barcelona, Spain.

Laboratori de Càlcul Numèric, Department of Applied Mathematics III, Universitat Politècnica de Catalunya, Barcelona, Spain.

出版信息

Methods Cell Biol. 2015;125:309-30. doi: 10.1016/bs.mcb.2014.11.003. Epub 2015 Jan 8.

Abstract

Fundamental biological processes including morphogenesis and tissue repair require cells to migrate collectively. In these processes, epithelial or endothelial cells move in a cooperative manner coupled by intercellular junctions. Ultimately, the movement of these multicellular systems occurs through the generation of cellular forces, exerted either on the substrate via focal adhesions (cell-substrate forces) or on neighboring cells through cell-cell junctions (cell-cell forces). Quantitative measurements of multicellular forces and kinematics with cellular or subcellular resolution have become possible only in recent years. In this chapter, we describe some of these techniques, which include particle image velocimetry to map cell velocities, traction force microscopy to map forces exerted by cells on the substrate, and monolayer stress microscopy to map forces within and between cells. We also describe experimental protocols to perform these measurements. The combination of these techniques with high-resolution imaging tools and molecular perturbations will lead to a better understanding of the mechanisms underlying collective cell migration in health and disease.

摘要

包括形态发生和组织修复在内的基本生物学过程需要细胞集体迁移。在这些过程中,上皮细胞或内皮细胞通过细胞间连接以协同方式移动。最终,这些多细胞系统的运动是通过细胞力的产生而发生的,这些力要么通过粘着斑作用于底物(细胞-底物力),要么通过细胞-细胞连接作用于相邻细胞(细胞-细胞力)。近年来,才有可能以细胞或亚细胞分辨率对多细胞力和运动学进行定量测量。在本章中,我们描述了其中一些技术,包括用于绘制细胞速度的粒子图像测速技术、用于绘制细胞作用于底物的力的牵引力显微镜技术,以及用于绘制细胞内和细胞间力的单层应力显微镜技术。我们还描述了进行这些测量的实验方案。这些技术与高分辨率成像工具和分子扰动的结合将有助于更好地理解健康和疾病状态下集体细胞迁移的潜在机制。

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