Department of Chemical Engineering, Faculty of Engineering, University of Maragheh, Maragheh 55181-83111, Iran.
Department of Materials Engineering, Faculty of Engineering, University of Maragheh, Maragheh 55181-83111, Iran.
Mater Sci Eng C Mater Biol Appl. 2017 May 1;74:374-381. doi: 10.1016/j.msec.2016.12.026. Epub 2016 Dec 7.
The conventional covalently cross-linked double network (DN) hydrogels with high stiffness often show low toughness and self-healing property due to the irreversible bond breakages in their networks. Therefore, scarcity of hydrogels that possess simultaneous features of stiffness, toughness, and autonomous self-healing properties at the same time remains a great challenge and seriously limits their biomedical applications. While, many natural materials acquire these features from their dynamic sacrificial bonds. Inspired by biomaterials, herein we propose a novel strategy to design stiff, tough and self-healing DN gels by substitution of both covalently cross-linked networks with strong, dynamic hydrogen bond cross-linked networks. The prepared fully physically cross-linked DN gels composed of strong agar biopolymer gel as the first network and tough polyvinyl alcohol (PVA) biopolymer gel as the second network. The DN gels demonstrated multiple-energy dissipating mechanisms with a high modulus up to 2200kPa, toughness up to 2111kJm, and ability to self-heal quickly and autonomously with regaining 67% of original strength only after 10min. The developed DN gels will open a new avenue to hydrogel research and holds high potential for diverse biomedical applications, such as scaffold, cartilage, tendon and muscle.
传统的具有高刚性的共价交联双网络(DN)水凝胶由于其网络中的不可逆键断裂,通常表现出低韧性和自修复性能。因此,同时具有刚性、韧性和自主自修复特性的水凝胶的稀缺性仍然是一个巨大的挑战,严重限制了它们在生物医学中的应用。然而,许多天然材料从其动态牺牲键中获得这些特性。受生物材料的启发,本文提出了一种通过用强动态氢键交联网络替代共价交联网络来设计刚性、坚韧和自修复的 DN 凝胶的新策略。所制备的完全物理交联的 DN 凝胶由强琼脂生物聚合物凝胶作为第一网络和坚韧的聚乙烯醇(PVA)生物聚合物凝胶作为第二网络组成。DN 凝胶表现出多种能量耗散机制,具有高达 2200kPa 的模量、高达 2111kJm 的韧性,并且能够快速和自主地自修复,在 10min 后仅恢复 67%的原始强度。所开发的 DN 凝胶将为水凝胶研究开辟新途径,并在支架、软骨、肌腱和肌肉等各种生物医学应用中具有很高的潜力。