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Non-Osmotic Hydrogels: A Rational Strategy for Safely Degradable Hydrogels

机译:非渗透性水凝胶:安全降解水凝胶的合理策略

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摘要

Hydrogels are promising materials for biomedical applications, where timely degradation is often preferred. In the conventional design, however, the cleavage of polymer networks essentially causes considerable morphological changes (i.e., degradation-induced swelling), triggering various medical complications. Herein, we report a rational strategy to suppress the degradation-induced swelling based on the synthetic control of the polymer-solvent interaction parameter (chi) of constituent polymer networks. The resultant hydrogels with an optimal chi parameter (chi(37 degrees C)approximate to 0.53; nonosmostic hydrogels) displayed the capability to retain their original shape and degrade without generating significant swelling pressure under physiological conditions (Pi(37 degrees C)<1 kPa). This concept of the safely degradable non-osmotic hydrogel is theoretically universal, and can be exploited for other types of synthetic hydrogels in various settings.
机译:水凝胶是用于生物医学应用的有前途的材料,其中经常优选及时降解。然而,在常规设计中,聚合物网络的断裂本质上引起相当大的形态变化(即,降解引起的膨胀),从而引发各种医学并发症。在这里,我们报告了一种合理的策略,可以基于对组成聚合物网络的聚合物-溶剂相互作用参数(chi)的综合控制来抑制降解引起的溶胀。所得的水凝胶具有最佳的chi参数(chi(37摄氏度)约为0.53;非等渗水凝胶)在生理条件下(Pi(37摄氏度)<1 kPa)显示出保持其原始形状并降解而不会产生显着溶胀压力的能力。 )。安全可降解的非渗透性水凝胶的这一概念在理论上是普遍的,并且可以在各种环境中用于其他类型的合成水凝胶。

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