Wuya College of Innovation, Shenyang Pharmaceutical University, No. 103, Wenhua Road, Shenyang 110016, China.
Wuya College of Innovation, Shenyang Pharmaceutical University, No. 103, Wenhua Road, Shenyang 110016, China..
Adv Colloid Interface Sci. 2023 Nov;321:103000. doi: 10.1016/j.cis.2023.103000. Epub 2023 Sep 20.
Supramolecular hydrogels bound by hydrogen bonding, host-guest, hydrophobic, and other non-covalent interactions are among the most attractive biomaterials available. Supramolecular hydrogels have attracted extensive attention due to their inherent dynamic reversibility, self-healing, stimuli-response, excellent biocompatibility, and near-physiological environment. However, the inherent contradiction between non-covalent interactions and mechanical strength makes the practical application of supramolecular hydrogels a great challenge. This review describes the mechanical strength of hydrogels mediated by supramolecular interactions, and focuses on the potential strategies for enhancing the mechanical strength of supramolecular hydrogels and illustrates their applications in related fields, such as flexible electronic sensors, wound dressings, and three-dimensional (3D) scaffolds. Finally, the current problems and future research prospects of supramolecular hydrogels are discussed. This review is expected to provide insights that will motivate more advanced research on supramolecular hydrogels.
由氢键、主体-客体、疏水和其他非共价相互作用结合的超分子水凝胶是最有吸引力的生物材料之一。由于其固有动态可逆性、自修复、刺激响应、优异的生物相容性和近生理环境,超分子水凝胶引起了广泛关注。然而,非共价相互作用和机械强度之间的固有矛盾使得超分子水凝胶的实际应用具有很大的挑战性。本综述描述了由超分子相互作用介导的水凝胶的机械强度,并重点介绍了增强超分子水凝胶机械强度的潜在策略,并说明了它们在相关领域的应用,如柔性电子传感器、伤口敷料和三维(3D)支架。最后,讨论了超分子水凝胶的当前问题和未来研究前景。本综述有望提供一些见解,激发对超分子水凝胶的更深入研究。