College of Marine Life Science, Ocean University of China, 5 Yushan Road, 266003 Qingdao, China.
Eye Institute of Xiamen University, School of Medicine, Xiamen University, 361102 Xiamen, China.
Int J Biol Macromol. 2021 Jul 1;182:689-700. doi: 10.1016/j.ijbiomac.2021.04.058. Epub 2021 Apr 16.
In situ 3D printing technologies is a new frontier for highly personalized medicine, which requires suitable bioink with rheology, biocompatibility, and gelation kinetics to support the right shape and mechanical properties of the printed construct. To this end, a facile design of thermo/photo dual cure composite hydrogel was proposed using MHBC and soluble collagen in this study. M/C composite hydrogel exhibited rapid thermo-induced sol-gel transition and contraction, tunable mechanical properties, proper microstructure and biodegradability for 3D cell culture, as well as improve cyto-compatibility, all of which were dependent upon the methacrylation degree of MHBC and M/C ratios. The printability of the optimal formulation (3% MHBC/1% collagen) was validated by its mild printing condition, rapid gelation of bioink at 37 °C and simple postprocessing manipulation. Both desirable printability and cyto-compatibility enable M/C composite hydrogel a potential candidate as bioink to be applied for in situ 3D bioprinting.
原位 3D 打印技术是高度个性化医疗的新前沿,这需要具有流变学、生物相容性和凝胶动力学的合适生物墨水来支持打印结构的正确形状和机械性能。为此,本研究提出了一种使用 MHBC 和可溶性胶原的简便热/光双重固化复合水凝胶设计。M/C 复合水凝胶表现出快速的热诱导溶胶-凝胶转变和收缩、可调的机械性能、适当的微观结构和用于 3D 细胞培养的生物降解性,以及改善细胞相容性,所有这些都取决于 MHBC 的甲丙烯酰化程度和 M/C 比。通过温和的打印条件、在 37°C 下生物墨水的快速凝胶化和简单的后处理操作,验证了最佳配方(3% MHBC/1%胶原)的可打印性。良好的可打印性和细胞相容性使 M/C 复合水凝胶成为可用于原位 3D 生物打印的生物墨水的潜在候选物。