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Adaptable Fast Relaxing Boronate‐Based Hydrogels for Probing Cell–Matrix Interactions

机译:适应性快速松弛的基于硼酸盐的水凝胶用于探测细胞-基质相互作用

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摘要

Hydrogels with tunable viscoelasticity hold promise as materials that can recapitulate many dynamic mechanical properties found in native tissues. Here, covalent adaptable boronate bonds are exploited to prepare hydrogels that exhibit fast relaxation, with relaxation time constants on the order of seconds or less, but are stable for long‐term cell culture and are cytocompatible for 3D cell encapsulation. Using human mesenchymal stem cells (hMSC) as a model, the fast relaxation matrix mechanics are found to promote cell–matrix interactions, leading to spreading and an increase in nuclear volume, and induce yes‐associated protein/PDZ binding domain nuclear localization at longer times. All of these effects are exclusively based on the hMSCs' ability to physically remodel their surrounding microenvironment. Given the increasingly recognized importance of viscoelasticity in controlling cell function and fate, it is expected that the synthetic strategies and material platform presented should provide a useful system to study mechanotransduction on and within viscoelastic environments and explore many questions related to matrix biology.
机译:具有可调节粘弹性的水凝胶有望成为可概括天然组织中许多动态力学性能的材料。在这里,共价适应性的硼酸键被用来制备水凝胶,该凝胶表现出快速的弛豫,弛豫时间常数在几秒或更短的数量级,但是对于长期的细胞培养是稳定的,并且对于3D细胞封装具有细胞相容性。使用人类间充质干细胞(hMSC)作为模型,发现快速弛豫矩阵机制可促进细胞-基质相互作用,从而导致扩散和核体积增加,并在更长的时间诱导yes-associed-protein / PDZ结合域的核定位次。所有这些影响都完全基于hMSC对其周围微环境进行物理重塑的能力。鉴于粘弹性在控制细胞功能和命运中的重要性日益受到重视,预计所提出的合成策略和材料平台应提供一个有用的系统,以研究粘弹性环境中及其内部的机械转导,并探索许多与基质生物学有关的问题。

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