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首页> 外文期刊>Biomaterials >Varying PEG density to control stress relaxation in alginate-PEG hydrogels for 3D cell culture studies
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Varying PEG density to control stress relaxation in alginate-PEG hydrogels for 3D cell culture studies

机译:不同于PEG密度以控制藻酸盐 - PEG水凝胶中的应力松弛进行3D细胞培养研究

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摘要

Hydrogels are commonly used as artificial extracellular matrices for 3D cell culture and for tissue engineering. Viscoelastic hydrogels with tunable stress relaxation have recently been developed, and stress relaxation in the hydrogels has been found to play a key role in regulating cell behaviors such as differentiation, spreading, and proliferation. Here we report a simple but precise materials approach to tuning stress relaxation of alginate hydrogels with polyethylene glycol (PEG) covalently grafted onto the alginate. Hydrogel relaxation was modulated independent of the initial elastic modulus by varying molecular weight and concentration of PEG along with calcium crosslinking of the alginate. Increased concentration and molecular weight of the PEG resulted in faster stress relaxation, a higher loss modulus, and increased creep. Interestingly, we found that stress relaxation of the hydrogels is determined by the total mass amount of PEG in the hydrogel, and not the molecular weight or concentration of PEG chains alone. We then evaluated the utility of these hydrogels for 3D cell culture. Faster relaxation in RGD-coupled alginate-PEG hydrogels led to increased spreading and proliferation of fibroblasts, and enhanced osteogenic differentiation of mesenchymal stem cells (MSCs). Thus, this work establishes a new materials approach to tuning stress relaxation in alginate hydrogels for 3D cell culture.
机译:水凝胶通常用作3D细胞培养的人工细胞外基质和组织工程。最近开发了可调谐应力松弛的粘弹性水凝胶,并且已经发现水凝胶中的应力松弛在调节细胞行为(例如分化,扩散和增殖)中发挥关键作用。在这里,我们报告了一种简单但精确的材料来调整藻酸乙二醇(PEG)与共价接枝到藻酸盐上的藻酸盐水凝胶的应力松弛。通过改变分子量和悬浮液以及藻酸钙的钙交联,改变水凝胶弛豫而独立于初始弹性模量。 PEG的浓度和分子量增加导致更快的应力松弛,更高的损失模量和增加的蠕变。有趣的是,我们发现水凝胶的应力松弛由水凝胶中的总质量量的PEG确定,而不是单独的PEG链的分子量或浓度。然后,我们评估了这些水凝胶的效用用于3D细胞培养。 RGD耦合藻酸盐 - PEG水凝胶中的速度更快地放松导致成纤维细胞的扩散和增殖,并增强了间充质干细胞的成骨分化(MSCs)。因此,这项工作建立了一种新的材料方法,可以在藻酸盐水凝胶中调整3D细胞培养物中的应力松弛。

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