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Advances in interpenetrating polymer network hydrogels and their applications

机译:互穿聚合物网络水凝胶的研究进展及其应用

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Interpenetrating polymer network (IPN) hydrogels brought distinct benefits compared to single network hydrogels like more widely controllable physical properties, and (frequently) more efficient drug loading/release. However, IPN strategy is not sufficient to design hydrogels with enhanced mechanical properties required for regenerative medicine like replacement of natural cartilage or artificial cornea. Some of the novel techniques promoted last decade for the preparation of IPN hydrogels which fulfill these requirements are discussed in the review. Among them, "double network" strategy had a strong contribution in the development of a large variety of hydrogels with spectacular mechanical properties at water content up to 90 %. Using cryogelation in tandem with IPN strategy led to composite cryogels with high mechanical properties and high performances in separation processes of ionic species. Highly stretchable and extremely tough hydrogels have been obtained by combining a covalently cross-linked synthetic network with an ionically cross-linked alginate network. IPN hydrogels with tailored mesh size have been also reported.
机译:与单网络水凝胶相比,互穿聚合物网络(IPN)水凝胶带来了明显的好处,例如更广泛的可控物理特性,以及(通常)更有效的药物装载/释放。然而,IPN策略不足以设计具有再生医学所需的增强机械性能的水凝胶,例如替代天然软骨或人造角膜。综述中讨论了最近十年中为满足这些要求而制备IPN水凝胶的一些新技术。其中,“双网络”策略在开发水含量高达90%时具有出色机械性能的多种水凝胶中发挥了重要作用。将冷冻凝胶与IPN策略结合使用可产生具有高机械性能和在离子物种分离过程中具有高性能的复合冷冻凝胶。通过将共价交联的合成网络与离子交联的藻酸盐网络相结合,已经获得了高度可拉伸且极其坚韧的水凝胶。还已经报道了具有定制筛孔尺寸的IPN水凝胶。

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