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Mechanically dynamic PDMS substrates to investigate changing cell environments

机译:机械动态PDMS基板来研究改变的细胞环境

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摘要

Mechanics of the extracellular matrix (ECM) play a pivotal role in governing cell behavior, such as cell spreading and differentiation. ECM mechanics have been recapitulated primarily in elastic hydrogels, including with dynamic properties to mimic complex behaviors (e.g., fibrosis); however, these dynamic hydrogels fail to introduce the viscoelastic nature of many tissues. Here, we developed a two-step crosslinking strategy to first form (via platinum-catalyzed crosslinking) networks of polydimethylsiloxane (PDMS) and then to increase PDMS crosslinking (via thiol-ene click reaction) in a temporally-controlled manner. This photoinitiated reaction increased the compressive modulus of PDMS up to 10-fold within minutes and was conducted under cytocompatible conditions. With stiffening, cells displayed increased spreading, changing from 1300 to 1900 mu m(2) and from 2700 to 4600 mu m(2) for fibroblasts and mesenchymal stem cells, respectively. In addition, higher myofibroblast activation (from 2 to 20%) for cardiac fibroblasts was observed with increasing PDMS substrate stiffness. These results indicate a cellular response to changes in PDMS substrate mechanics, along with a demonstration of a mechanically dynamic and photoresponsive PDMS substrate platform to model the dynamic behavior of ECM. (C) 2017 Elsevier Ltd. All rights reserved.
机译:细胞外基质(ECM)的机制在治疗细胞行为中发挥枢转作用,例如细胞扩散和分化。 ECM力学主要是在弹性水凝胶中综合,包括用于模拟复杂行为的动态性质(例如,纤维化);然而,这些动态水凝胶不能引入许多组织的粘弹性性质。在这里,我们开发了一种双层交联策略,首先(通过铂催化的交联)网络的聚二甲基硅氧烷(PDMS)网络,然后以时间控制的方式增加PDMS交联(通过硫醇-NE咔哒反应)。这种光灭绝反应在分钟内增加了PDMS的压缩模量高达10倍,并在细胞相容条件下进行。通过加强,细胞显示出来的涂布,分别从1300〜1900μm(2)和2700至4600μm(2)分别用于成纤维细胞和间充质干细胞。此外,随着PDMS基板刚度的增加,观察到心脏成纤维细胞的更高的肌纤维细胞活化(2至20%)。这些结果表明了对PDMS基板力学变化的蜂窝响应,以及用于模拟ECM的动态行为的机械动态和光学介绍PDMS基板平台的示范。 (c)2017 Elsevier Ltd.保留所有权利。

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