Liu Yi, Wong Chui-Wei, Chang Shu-Wei, Hsu Shan-Hui
Institute of Polymer Science and Engineering, National Taiwan University, Taipei, Taiwan, R.O.C.
Department of Civil Engineering, National Taiwan University, Taipei, Taiwan, R.O.C.
Acta Biomater. 2021 Mar 1;122:211-219. doi: 10.1016/j.actbio.2020.12.051. Epub 2021 Jan 11.
Self-healing hydrogels attract broad attention as cell/drug carriers for direct injection into damaged tissues or as bioinks for three-dimensional (3D) printing of tissue-like constructs. For application in 3D printing, the self-healing hydrogels should maintain the steady rheological properties during printing process, and be further stabilized by secondary post-printing crosslinking. Here, a chitosan self-healing hydrogel is developed for injectable hydrogel and printable ink using phenol-functionalized chitosan and dibenzaldehyde-terminated telechelic poly(ethylene glycol). Phenol functionalization of chitosan can introduce unique interaction that allows the hydrogel to possess fast gelling rate, good self-healing ability, and long-range critical gel behavior, as well as secondary visible light-crosslinking capability. The hydrogel is easily pre-formed in a syringe and extruded through a 26-gauge needle to produce a continuous and stackable filament. The cell-laden hydrogel is successfully printed into a 3D construct. Moreover, the hydrogel is developed for modular 3D printing, where hydrogel modules (LEGO-like building blocks) are individually printed and assembled into an integrated construct followed by secondary visible light-crosslinking. The versatile phenol-functionalized chitosan self-healing hydrogel will open up numerous potential applications, particularly in 3D bioprinting and modular 3D bioprinting.
自愈合水凝胶作为细胞/药物载体直接注射到受损组织中,或作为生物墨水用于三维(3D)打印组织样构建体,受到广泛关注。对于3D打印应用,自愈合水凝胶在打印过程中应保持稳定的流变学性质,并通过二次打印后交联进一步稳定。在此,使用酚官能化壳聚糖和二苯甲醛封端的遥爪聚乙二醇开发了一种用于可注射水凝胶和可打印墨水的壳聚糖自愈合水凝胶。壳聚糖的酚官能化可以引入独特的相互作用,使水凝胶具有快速凝胶化速率、良好的自愈合能力和长程临界凝胶行为,以及二次可见光交联能力。水凝胶易于在注射器中预成型,并通过26号针头挤出,以产生连续且可堆叠的细丝。载有细胞的水凝胶成功打印成3D构建体。此外,该水凝胶是为模块化3D打印而开发的,其中水凝胶模块(类似乐高积木的构建块)被单独打印并组装成一个集成构建体,随后进行二次可见光交联。这种多功能的酚官能化壳聚糖自愈合水凝胶将开辟众多潜在应用,特别是在3D生物打印和模块化3D生物打印方面。