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细胞外基质调节细胞行为的力学线索。

Mechanophysical Cues in Extracellular Matrix Regulation of Cell Behavior.

机构信息

Department of Chemistry, Myongji University, Yongin, 449-728, Republic of Korea.

Department of Physics, Villanova University, Villanova, PA, 19085, USA.

出版信息

Chembiochem. 2020 May 4;21(9):1254-1264. doi: 10.1002/cbic.201900686. Epub 2020 Mar 2.

Abstract

The extracellular matrix (ECM) is a macromolecular network that can provide biochemical and structural support for cell adhesion and formation. It regulates cell behavior by influencing biochemical and physical cues. It is a dynamic structure whose components are modified, degraded, or deposited during connective tissue development, giving tissues strength and structural integrity. The physical properties of the natural ECM environment control the design of naturally or synthetically derived biomaterials to guide cell function in tissue engineering. Tissue engineering is an important field that explores physical cues of the ECM to produce new viable tissue for medical applications, such as in organ transplant and organ recovery. Understanding how the ECM exerts physical effects on cell behavior, when cells are seeded in synthetic ECM scaffolds, is of utmost importance. Herein we review recent findings in this area that report on cell behaviors in a variety of ECMs with different physical properties, i.e., topology, geometry, dimensionality, stiffness, and tension.

摘要

细胞外基质(ECM)是一种高分子网络,可为细胞黏附和形成提供生化和结构支持。它通过影响生化和物理线索来调节细胞行为。它是一种动态结构,其成分在结缔组织发育过程中被修饰、降解或沉积,为组织提供强度和结构完整性。天然 ECM 环境的物理特性控制着天然或合成衍生生物材料的设计,以指导组织工程中的细胞功能。组织工程是一个重要的领域,它探索 ECM 的物理线索,以产生用于医学应用的新的可行组织,例如器官移植和器官恢复。了解 ECM 如何对细胞行为产生物理影响,当细胞接种在合成 ECM 支架中时,这一点至关重要。本文综述了该领域的最新发现,这些发现报告了具有不同物理特性(例如拓扑结构、几何形状、维度、刚度和张力)的各种 ECM 中的细胞行为。

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