Jin Lu, Xu Jia, Xue Youcai, Zhang Xinjiang, Feng Mengna, Wang Chengshuang, Yao Wei, Wang Jinshan, He Meng
School of Materials Science and Engineering, Yancheng Institute of Technology, Yancheng 224051, China.
Gels. 2021 Oct 17;7(4):172. doi: 10.3390/gels7040172.
Hydrogels have been widely used in many fields including biomedicine and water treatment. Significant achievements have been made in these fields due to the extraordinary properties of hydrogels, such as facile processability and tissue similarity. However, based on the in-depth study of the microstructures of hydrogels, as a result of the enhancement of biomedical requirements in drug delivery, cell encapsulation, cartilage regeneration, and other aspects, it is challenge for conventional homogeneous hydrogels to simultaneously meet different needs. Fortunately, heterogeneous multilayer hydrogels have emerged and become an important branch of hydrogels research. In this review, their main preparation processes and mechanisms as well as their composites from different resources and methods, are introduced. Moreover, the more recent achievements and potential applications are also highlighted, and their future development prospects are clarified and briefly discussed.
水凝胶已广泛应用于包括生物医学和水处理在内的许多领域。由于水凝胶具有诸如易于加工和组织相似性等非凡特性,在这些领域已取得了重大成就。然而,基于对水凝胶微观结构的深入研究,由于药物递送、细胞封装、软骨再生等方面生物医学要求的提高,传统的均匀水凝胶要同时满足不同需求具有挑战性。幸运的是,非均相多层水凝胶已经出现并成为水凝胶研究的一个重要分支。在这篇综述中,介绍了它们的主要制备过程和机制,以及来自不同资源和方法的复合材料。此外,还突出了最新的成就和潜在应用,并阐明和简要讨论了它们未来的发展前景。