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利用原子力显微镜探测细胞微环境和组织重塑

Probing cellular microenvironments and tissue remodeling by atomic force microscopy.

作者信息

Ludwig Thomas, Kirmse Robert, Poole Kate, Schwarz Ulrich S

机构信息

Group Microenvironment of Tumor Cell Invasion, German Cancer Research Center, BIOQUANT-Zentrum; BQ 0009 NWG Ludwig, Im Neuenheimer Feld 267, 69120 Heidelberg, Germany.

出版信息

Pflugers Arch. 2008 Apr;456(1):29-49. doi: 10.1007/s00424-007-0398-9. Epub 2007 Dec 6.

Abstract

The function of cells is strongly determined by the properties of their extracellular microenvironment. Biophysical parameters like environmental stiffness and fiber orientation in the surrounding matrix are important determinants of cell adhesion and migration. Processes like tissue maintenance, wound repair, cancer cell invasion, and morphogenesis depend critically on the ability of cells to actively sense and remodel their surroundings. Pericellular proteolytic activity and adaptation of migration tactics to the environment are strategies to achieve this aim. Little is known about the distinct regulatory mechanisms that are involved in these processes. The system's critical biophysical and biochemical determinants are well accessible by atomic force microscopy (AFM), a unique tool for functional, nanoscale probing and morphometric, high-resolution imaging of processes in live cells. This review highlights common principles of tissue remodeling and focuses on application examples of different AFM techniques, for example elasticity mapping, the combination of AFM and fluorescence microscopy, the morphometric imaging of proteolytic activity, and force spectroscopy applications of single molecules or individual cells. To achieve a more complete understanding of the processes underlying the interaction of cells with their environments, the combination of AFM force spectroscopy experiments will be essential.

摘要

细胞的功能在很大程度上由其细胞外微环境的特性决定。诸如环境硬度和周围基质中的纤维取向等生物物理参数是细胞黏附和迁移的重要决定因素。组织维持、伤口修复、癌细胞侵袭和形态发生等过程严重依赖于细胞主动感知和重塑周围环境的能力。细胞周围的蛋白水解活性以及迁移策略对环境的适应性是实现这一目标的策略。对于这些过程中涉及的独特调控机制,人们了解甚少。原子力显微镜(AFM)可以很好地获取该系统关键的生物物理和生化决定因素,AFM是一种用于对活细胞中的过程进行功能性纳米级探测和形态测量、高分辨率成像的独特工具。本综述重点介绍了组织重塑的共同原理,并着重阐述了不同AFM技术的应用实例,例如弹性测绘、AFM与荧光显微镜的结合、蛋白水解活性的形态测量成像以及单分子或单个细胞的力谱应用。为了更全面地理解细胞与其环境相互作用的潜在过程,AFM力谱实验的结合将至关重要。

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