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三维细胞-基质黏附。

Cell-matrix adhesions in 3D.

机构信息

Laboratory of Cell and Developmental Biology, National Institute of Dental and Craniofacial Research, National Institutes of Health, Bethesda, MD 20892, United States.

出版信息

Matrix Biol. 2011 Sep;30(7-8):363-8. doi: 10.1016/j.matbio.2011.06.001. Epub 2011 Jun 23.

Abstract

Cells in a three-dimensional (3D) extracellular matrix environment often display different properties and behavior compared to cells cultured on a two-dimensional (2D) substrate. Recent studies characterizing the cell-matrix adhesions formed by cells within a 3D matrix have arrived at contradictory conclusions regarding the presence and composition of adhesions. Here we review this literature, and provide a comparative compilation of information found in published studies from the 3D cell-matrix adhesion field in order to identify shared and divergent conclusions and conceptually important areas that require further research. Although there is a general consensus that discrete cell-matrix adhesions exist in various 3D matrix environments, there are specific exceptions, particularly in cells undergoing amoeboid migration. There are also technical issues to consider when imaging adhesions in 3D matrix; for example, over-expression of a cytoskeletal cell adhesion component can potentially cloud the visualization of adhesions and even alter the mode of cell migration. Properties such as stiffness and local matrix topography may also affect the composition of cell-matrix adhesions. For example, even though cells contain integrin-based 3D adhesions, there can be substantial variability within these adhesions in the presence of force-dependent cytoskeletal components such as vinculin. These new findings and ideas provide promising new leads for understanding the regulation and function of cell-matrix adhesions in 3D matrix.

摘要

与在二维(2D)基质上培养的细胞相比,三维(3D)细胞外基质环境中的细胞通常表现出不同的特性和行为。最近的研究描述了细胞在 3D 基质中形成的细胞-基质黏附,这些研究对黏附的存在和组成得出了相互矛盾的结论。在这里,我们回顾了这一文献,并对 3D 细胞-基质黏附领域已发表研究中的信息进行了比较汇编,以确定共同和不同的结论以及需要进一步研究的概念性重要领域。尽管人们普遍认为在各种 3D 基质环境中存在离散的细胞-基质黏附,但也存在具体的例外情况,特别是在发生阿米巴样迁移的细胞中。在 3D 基质中成像黏附也存在技术问题;例如,细胞骨架细胞黏附成分的过表达可能会使黏附的可视化变得复杂,甚至改变细胞迁移的方式。刚度和局部基质形貌等特性也可能影响细胞-基质黏附的组成。例如,尽管细胞中存在基于整合素的 3D 黏附,但在存在依赖于力的细胞骨架成分(如 vinculin)的情况下,这些黏附中可能存在很大的可变性。这些新发现和新观点为理解 3D 基质中细胞-基质黏附的调节和功能提供了有希望的新线索。

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