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PhotoresponsiveHydrogels with Photoswitchable Mechanical Properties Allow Time-ResolvedAnalysis of Cellular Responses to Matrix Stiffening

机译:光敏具有可光切换机械性能的水凝胶可实现时间分辨细胞对基体加劲的响应分析

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摘要

As cell function and phenotype can be directed by the mechanical characteristics of the surrounding matrix, hydrogels have become important platforms for cell culture systems, with properties that can be tuned by external stimuli, such as divalent cations, enzymatic treatment, and pH. However, many of these stimuli can directly affect cell behavior, making it difficult to distinguish purely mechanical signaling events. This study reports on the development of a hydrogel that incorporates photoswitchable cross-linkers, which can reversibly alter their stiffness upon irradiation with the appropriate wavelength of light. Furthermore, this study reports the response of bone-marrow-derived mesenchymal stem cells (MSCs) on these hydrogels that were stiffened systematically by irradiation with blue light. The substrates were shown to be noncytotoxic, and crucially MSCs were not affected by blue-light exposure. Time-resolved analysis of cell morphology showed characteristic cell spreading and increased aspect ratios in response to greater substrate stiffness. This hydrogel provides a platform to study mechanosignaling in cellsresponding to dynamic changes in stiffness, offering a new way tostudy mechanotransduction signaling pathways and biological processes,with implicit changes to tissue mechanics, such as development, ageing,and fibrosis.
机译:由于细胞功能和表型可以由周围基质的机械特性决定,因此水凝胶已成为细胞培养系统的重要平台,其特性可以通过外部刺激(例如二价阳离子,酶处理和pH)进行调节。但是,这些刺激中的许多刺激都可以直接影响细胞行为,从而难以区分纯机械信号事件。这项研究报告了水凝胶的发展,该水凝胶包含可光转换的交联剂,当用适当波长的光照射时,它可以可逆地改变其刚性。此外,该研究报告了骨髓来源的间充质干细胞(MSC)对这些水凝胶的反应,这些水凝胶通过蓝光照射而系统地变硬。底物显示出无细胞毒性,至关重要的是,MSC不受蓝光照射的影响。时间分辨分析的细胞形态显示响应更大的基板刚度特征性的细胞扩散和增加的长宽比。这种水凝胶提供了一个研究细胞中机械信号的平台响应刚度的动态变化,提供了一种新的方法研究机械转导信号通路和生物学过程,对组织力学的隐式变化,例如发育,老化,和纤维化。

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