MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou, 310058, China.
Adv Sci (Weinh). 2023 Oct;10(28):e2303326. doi: 10.1002/advs.202303326. Epub 2023 Aug 6.
Hydrogels with tailor-made swelling-shrinkable properties have aroused considerable interest in numerous biomedical domains. For example, as swelling is a key issue for blood and wound extrudates absorption, the transference of nutrients and metabolites, as well as drug diffusion and release, hydrogels with high swelling capacity have been widely applicated in full-thickness skin wound healing and tissue regeneration, and drug delivery. Nevertheless, in the fields of tissue adhesives and internal soft-tissue wound healing, and bioelectronics, non-swelling hydrogels play very important functions owing to their stable macroscopic dimension and physical performance in physiological environment. Moreover, the negative swelling behavior (i.e., shrinkage) of hydrogels can be exploited to drive noninvasive wound closure, and achieve resolution enhancement of hydrogel scaffolds. In addition, it can help push out the entrapped drugs, thus promote drug release. However, there still has not been a general review of the constructions and biomedical applications of hydrogels from the viewpoint of swelling-shrinkable properties. Therefore, this review summarizes the tactics employed so far in tailoring the swelling-shrinkable properties of hydrogels and their biomedical applications. And a relatively comprehensive understanding of the current progress and future challenge of the hydrogels with different swelling-shrinkable features is provided for potential clinical translations.
具有定制溶胀-收缩性能的水凝胶在众多生物医学领域引起了相当大的兴趣。例如,由于溶胀是血液和伤口挤出物吸收、营养物质和代谢物转移以及药物扩散和释放的关键问题,因此具有高溶胀能力的水凝胶已广泛应用于全层皮肤伤口愈合和组织再生以及药物输送。然而,在组织粘合剂和内部软组织伤口愈合以及生物电子学领域,由于其在生理环境下稳定的宏观尺寸和物理性能,非溶胀水凝胶发挥着非常重要的作用。此外,水凝胶的负溶胀行为(即收缩)可用于驱动非侵入性伤口闭合,并提高水凝胶支架的分辨率增强效果。此外,它还有助于挤出包埋的药物,从而促进药物释放。然而,目前还没有从溶胀-收缩性能的角度对水凝胶的结构和生物医学应用进行全面综述。因此,本综述总结了迄今为止用于定制水凝胶溶胀-收缩性能及其生物医学应用的策略。并为具有不同溶胀-收缩特性的水凝胶的潜在临床转化提供了对当前进展和未来挑战的相对全面的理解。