机械转化
机械敏感通道
材料科学
间充质干细胞
粘附
焦点粘着
表面光洁度
细胞命运测定
表面粗糙度
细胞粘附
细胞生物学
涂层
纳米技术
干细胞
生物物理学
化学
生物
复合材料
信号转导
生物化学
基因
受体
转录因子
离子通道
作者
Yong Hou,Wenyan Xie,Leixiao Yu,Luis Cuellar Camacho,Chuanxiong Nie,Man Zhang,Rainer Haag,Qiang Wei
出处
期刊:Small
[Wiley]
日期:2020-02-17
卷期号:16 (10)
被引量:197
标识
DOI:10.1002/smll.201905422
摘要
Abstract The topographic features of an implant, which mechanically regulate cell behaviors and functions, are critical for the clinical success in tissue regeneration. How cells sense and respond to the topographical cues, e.g., interfacial roughness, is yet to be fully understood and even debatable. Here, the mechanotransduction and fate determination of human mesenchymal stem cells (MSCs) on surface roughness gradients are systematically studied. The broad range of topographical scales and high‐throughput imaging is achieved based on a catecholic polyglycerol coating fabricated by a one‐step‐tilted dip‐coating approach. It is revealed that the adhesion of MSCs is biphasically regulated by interfacial roughness. The cell mechanotransduction is investigated from focal adhesion to transcriptional activity, which explains that cellular response to interfacial roughness undergoes a direct force‐dependent mechanism. Moreover, the optimized roughness for promoting cell fate specification is explored.
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