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A rapid method for determining protein diffusion through hydrogels for regenerative medicine applications

机译:测定再生医学应用中水凝胶中蛋白质扩散的快速方法

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摘要

Hydrogels present versatile platforms for the encapsulation and delivery of proteins and cells for regenerative medicine applications. However, differences in hydrogel cross-linking density, polymer weight content, and affinity for proteins all contribute to diverse diffusion rates of proteins through hydrogel networks. Here, we describe a simple method to accurately measure protein diffusion through hydrogels, within a few hours and without the use of large amounts of protein. We tracked the diffusion of several proteins of varying molecular weights along the axial direction of capillary tubes filled with alginate, collagen, or poly(ethylene glycol) hydrogels. The rate of protein diffusion decreased with increasing molecular weight. A computational model of protein diffusion through capillary tubes was also created to predict and verify experimental protein diffusion coefficients. This in vitro capillary tube-based method of measuring protein diffusion represents a simple strategy to interrogate protein diffusion through natural and synthetic hydrogels and aid in the design of better biomaterial-based delivery vehicles that can effectively modulate protein release.
机译:水凝胶提供了用于再生医学应用的蛋白质和细胞的封装和递送的通用平台。然而,水凝胶交联密度,聚合物重量含量和对蛋白质的亲和力的差异均有助于蛋白质通过水凝胶网络的不同扩散速率。在这里,我们描述了一种简单的方法,可以在几个小时内准确测量蛋白质通过水凝胶的扩散,而无需使用大量蛋白质。我们追踪了几种分子量不同的蛋白质沿着充满藻酸盐,胶原蛋白或聚乙二醇水凝胶的毛细管的轴向扩散。蛋白质扩散速率随分子量增加而降低。还建立了蛋白质通过毛细管扩散的计算模型,以预测和验证实验性蛋白质扩散系数。这种基于体外毛细管的测量蛋白质扩散的方法代表了一种通过天然和合成水凝胶询问蛋白质扩散的简单策略,并有助于设计更好的基于生物材料的传递载体,可以有效地调节蛋白质的释放。

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