自愈水凝胶
机械生物学
NFAT公司
机械转化
变硬
生物物理学
化学
基质(化学分析)
刚度
材料科学
细胞生物学
生物化学
生物
复合材料
高分子化学
基因
转录因子
作者
Kemal Arda Günay,Tova L. Ceccato,Jason S. Silver,Kendra L. Bannister,Olivia J. Bednarski,Leslie A. Leinwand,Kristi S. Anseth
标识
DOI:10.1002/anie.201901989
摘要
There is a growing interest in materials that can dynamically change their properties in the presence of cells to study mechanobiology. Herein, we exploit the 365 nm light mediated [4+4] photodimerization of anthracene groups to develop cytocompatible PEG-based hydrogels with tailorable initial moduli that can be further stiffened. A hydrogel formulation that can stiffen from 10 to 50 kPa, corresponding to the stiffness of a healthy and fibrotic heart, respectively, was prepared. This system was used to monitor the stiffness-dependent localization of NFAT, a downstream target of intracellular calcium signaling using a reporter in live cardiac fibroblasts (CFbs). NFAT translocates to the nucleus of CFbs on stiffening hydrogels within 6 h, whereas it remains cytoplasmic when the CFbs are cultured on either 10 or 50 kPa static hydrogels. This finding demonstrates how dynamic changes in the mechanical properties of a material can reveal the kinetics of mechanoresponsive cell signaling pathways that may otherwise be missed in cells cultured on static substrates.
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