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纤维弹性协调基质募集和纤维模量以促进细胞机械感知。

Fiber Flexibility Reconciles Matrix Recruitment and the Fiber Modulus to Promote Cell Mechanosensing.

机构信息

State Key Laboratory of Polymer Materials and Engineering, College of Polymer Science and Engineering, Sichuan University, Chengdu 610065, P. R. China.

Department of Nephrology, Kidney Research Institute, Frontiers Science Center for Disease-related Molecular Network, West China Hospital, Sichuan University, Chengdu 610041, P. R. China.

出版信息

Nano Lett. 2024 Apr 3;24(13):4029-4037. doi: 10.1021/acs.nanolett.4c00923. Epub 2024 Mar 25.

Abstract

The mechanical interaction between cells and the extracellular matrix is pervasive in biological systems. On fibrous substrates, cells possess the ability to recruit neighboring fibers, thereby augmenting their own adhesion and facilitating the generation of mechanical cues. However, the matrices with high moduli impede fiber recruitment, restricting the cell mechanoresponse. Herein, by harnessing the inherent swelling properties of gelatin, the flexible gelatin methacryloyl network empowers cells to recruit fibers spanning a broad spectrum of physiological moduli during adhesion. The high flexibility concurrently facilitates the optimization of fiber distribution, deformability, and modulus, contributing to the promotion of cell mechanosensing. Consequently, the randomly distributed flexible fibers with high moduli maximize the cell adhesive forces. This study uncovers the impact of fiber recruitment on cell mechanosensing and introduces fiber flexibility as a previously unexplored property, offering an innovative perspective for the design and development of novel biomaterials.

摘要

细胞与细胞外基质之间的力学相互作用在生物系统中普遍存在。在纤维状基底上,细胞具有募集邻近纤维的能力,从而增强自身的黏附,并促进机械线索的产生。然而,高模量的基质阻碍了纤维的募集,限制了细胞的力学响应。在这里,通过利用明胶固有的溶胀特性,柔性明胶甲基丙烯酰网络使细胞能够在黏附过程中招募跨越广泛生理模量范围的纤维。高柔韧性同时促进了纤维分布、变形和模量的优化,有助于促进细胞的机械感知。因此,具有高模量的随机分布的柔性纤维最大限度地提高了细胞黏附力。这项研究揭示了纤维募集对细胞机械感知的影响,并引入了纤维柔韧性作为一个以前未被探索的特性,为新型生物材料的设计和开发提供了一个新的视角。

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