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Micro- and nanogels with labile crosslinks - from synthesis to biomedical applications

机译:具有不稳定交联的微凝胶和纳米凝胶-从合成到生物医学应用

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摘要

Micro- or nanosized three-dimensional crosslinked polymeric networks have been designed and described for various biomedical applications, including living cell encapsulation, tissue engineering, and stimuli responsive controlled delivery of bioactive molecules. For most of these applications, it is necessary to disintegrate the artificial scaffold into nontoxic residues with smaller dimensions to ensure renal clearance for better biocompatibility of the functional materials. This can be achieved by introducing stimuli-cleavable linkages into the scaffold structures. pH, enzyme, and redox potential are the most frequently used biological stimuli. Moreover, some external stimuli, for example light and additives, are also used to trigger the disintegration of the carriers or their assembly. In this review, we highlight the recent progress in various chemical and physical methods for synthesizing and crosslinking micro-and nanogels, as well as their development for incorporation of cleavable linkages into the network of micro- and nanogels.
机译:已经针对各种生物医学应用设计和描述了微米或纳米级的三维交联聚合物网络,包括活细胞封装,组织工程和生物活性分子的刺激响应控制递送。对于这些应用中的大多数,有必要将人造支架分解成尺寸较小的无毒残留物,以确保肾脏清除,从而使功能材料具有更好的生物相容性。这可以通过将刺激可裂解的连接引入支架结构中来实现。 pH,酶和氧化还原电位是最常用的生物刺激物。此外,一些外部刺激,例如光和添加剂,也被用来触发载体的分解或它们的组装。在这篇综述中,我们着重介绍了用于合成和交联微凝胶和纳米凝胶的各种化学和物理方法的最新进展,以及将可裂解键结合到微凝胶和纳米凝胶网络中的最新进展。

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