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通过材料线索和表面图案化工程细胞指令性材料来控制细胞命运和功能。

Engineering Cell Instructive Materials To Control Cell Fate and Functions through Material Cues and Surface Patterning.

机构信息

Department of Chemical, Materials and Industrial Production Engineering and Interdisciplinary Research Centre on Biomaterials, University of Naples Federico II , P.le Tecchio 80, 80125 Naples, Italy.

Center for Advanced Biomaterials for Health Care@CRIB, Istituto Italiano di Tecnologia , L.go Barsanti e Matteucci 53, 80125 Naples, Italy.

出版信息

ACS Appl Mater Interfaces. 2016 Jun 22;8(24):14896-908. doi: 10.1021/acsami.5b08658. Epub 2016 Jan 4.

Abstract

Mastering the interaction between cells and extracellular environment is a fundamental prerequisite in order to engineer functional biomaterial interfaces able to instruct cells with specific commands. Such advanced biomaterials might find relevant application in prosthesis design, tissue engineering, diagnostics and stem cell biology. Because of the highly complex, dynamic, and multifaceted context, a thorough understanding of the cell-material crosstalk has not been achieved yet; however, a variety of material features including biological cues, topography, and mechanical properties have been proved to impact the strength and the nature of the cell-material interaction, eventually affecting cell fate and functions. Although the nature of these three signals may appear very different, they are equated by their participation in the same material-cytoskeleton crosstalk pathway as they regulate cell adhesion events. In this work we present recent and relevant findings on the material-induced cell responses, with a particular emphasis on how the presentation of biochemical/biophysical signals modulates cell behavior. Finally, we summarize and discuss the literature data to draw out unifying elements concerning cell recognition of and reaction to signals displayed by material surfaces.

摘要

掌握细胞与细胞外环境之间的相互作用是工程功能性生物材料界面的基本前提,这种界面能够向细胞传递特定的指令。此类先进的生物材料可能在假体设计、组织工程、诊断和干细胞生物学中具有重要的应用。由于细胞-材料相互作用的高度复杂、动态和多方面的特性,目前还没有完全理解这种相互作用;然而,已经证明各种材料特性,包括生物信号、形貌和机械性能,都会影响细胞-材料相互作用的强度和性质,最终影响细胞的命运和功能。尽管这三种信号的性质可能看起来非常不同,但它们都参与了相同的材料-细胞骨架相互作用途径,因为它们都调节细胞黏附事件。在这项工作中,我们介绍了最近关于材料诱导细胞反应的相关发现,特别强调了生物化学/生物物理信号的呈现方式如何调节细胞行为。最后,我们总结和讨论文献数据,以得出关于细胞识别和对材料表面呈现的信号的反应的统一要素。

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