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首页> 外文期刊>Acta biomaterialia >Hydrogel substrate stress-relaxation regulates the spreading and proliferation of mouse myoblasts
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Hydrogel substrate stress-relaxation regulates the spreading and proliferation of mouse myoblasts

机译:水凝胶底物应力 - 松弛调节小鼠肌细胞的扩散和增殖

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Graphical abstract Display Omitted Abstract Mechanical properties of the extracellular microenvironment are known to alter cellular behavior, such as spreading, proliferation or differentiation. Previous studies have primarily focused on studying the effect of matrix stiffness on cells using hydrogel substrates that exhibit purely elastic behavior. However, these studies have neglected a key property exhibited by the extracellular matrix (ECM) and various tissues; viscoelasticity and subsequent stress-relaxation. As muscle exhibits viscoelasticity, stress-relaxation could regulate myoblast behavior such as spreading and proliferation, but this has not been previously studied. In order to test the impact of stress relaxation on myoblasts, we created a set of two-dimensional RGD-modified alginate hydrogel substrates with varying initial elastic moduli and rates of relaxation. The spreading of myoblasts cultured on soft stress-relaxing substrates was found to be greater than cells on purely elastic substrates of the same initial elastic modulus. Additionally, the proliferation of myoblasts was greater on hydrogels that exhibited stress-relaxation, as compared to cells on elastic hydrogels of the same modulus. These findings highlight stress-relaxation as an important mechanical property in the design of a biomaterial system for the culture of myoblasts. Statement of Significance This article investigates the effect of matrix stress-relaxation on spreading and proliferation of myoblasts by using tunable elastic and stress-relaxing alginate hydrogels substrates with different initial elastic moduli. Many past studies investigating the effect of mechanical properties on cell fate have neglected the viscoelastic behavior of extracellular matrices and various tissues and used hydrogels exhibiting purely elastic behavior. Muscle tissue is viscoelastic and exhibits stress-relaxation. Therefore, stress-relaxation could regulate myoblast behavior if it were to be incorporated into the design of hydrogel substrates. Altogether, we showed that stress-relaxation impacts myoblasts spreading and proliferation. These findings enable a better understanding of myoblast behavior on viscoelastic substrates and could lead to the design of more suitable substrates for myoblast expansion in vitro .
机译:图形摘要显示省略了摘要摘要摘要众所周知细胞外微环境的机械性能改变细胞行为,例如散布,增殖或分化。以前的研究主要集中于使用纯度弹性行为的水凝胶基材研究基质刚度对细胞的影响。然而,这些研究忽略了细胞外基质(ECM)和各种组织呈现的关键特性;粘弹性和随后的压力松弛。随着肌肉表现出粘弹性,应激松弛可以调节肌细胞性行为,例如传播和增殖,但这尚未研究过。为了测试压力松弛对肌细胞的影响,我们创建了一组二维RGD改性的藻氨酸水凝胶基材,其具有不同的初始弹性模量和弛豫率。发现在软胁迫缓解基材上培养的肌细胞的扩散大于相同初始弹性模量的纯弹性基板上的细胞。另外,与相同模量的弹性水凝胶上的细胞相比,在表现出应力 - 松弛的水凝胶上更大。这些发现突出了应力放松作为设计肌细胞培养的生物材料系统中的重要力学性质。重要性陈述本文通过使用具有不同初始弹性模量的可调谐弹性和应力松弛的海藻酸盐水凝胶基材来研究基质应力 - 放松对肌细胞的扩散和增殖的影响。许多研究研究机械性能对细胞命运的影响忽略了细胞外基质的粘弹性和各种组织和使用纯度弹性行为的水凝胶。肌肉组织是粘弹性并且表现出应力松弛。因此,如果要纳入水凝胶基材的设计中,应激松弛可以调节肌细胞行为。完全,我们表明压力 - 放松会影响肌细胞蔓延和扩散。这些发现能够更好地了解粘弹性基材上的肌细胞行为,并且可以在体外设计更合适的肌细胞膨胀脱韧。

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