Improving the mechanical properties of 3D printed GelMA composite hydrogels by tannic acid

Xue Zhang, Xiong Yang, Wenbi Wu, Xuebing Jiang, Yingchu Dong, Shuai Yang, Maling Gou
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Abstract

The lack of advanced biomaterials is a major challenge in bio-printing. Gelatin-methacryloyl (GelMA) hydrogel, as one of the most commonly used biomaterials in 3D printing, has limited the applications of medicine because of its low mechanical properties. In this study, to enhance the mechanical strength of GelMA hydrogels, we prepared a composite hydrogel based on F127 diacrylate (F127DA) and GelMA, followed by lyophilization and tannic acid (TA) treatment. In this composite hydrogel, the F127DA could self-assemble into nanomicelles as crosslinking centers for monomer polymerization, which provides additional energy dissipation in hydrogels due to the synergistic deformation of micelles and internal rearrangement of physical binding. After lyophilization of the composite hydrogel, the porous hydrogel was formed. The subsequent treatment of TA could diffuse into the inner of the hydrogel and react with the hydrogel via hydrogen bonds, resulting in the significant enhancement of mechanical properties. The maximum tensile deformation of the obtained hydrogel was about 11 times higher than that of GelMA. This work demonstrates a method to enhance the mechanical properties of 3D-printed GelMA hydrogel with promising application in bioprinting.

Abstract Image

单宁酸改善3D打印GelMA复合水凝胶的力学性能
缺乏先进的生物材料是生物打印的一大挑战。明胶-甲基丙烯酰基(GelMA)水凝胶作为3D打印中最常用的生物材料之一,由于其力学性能低,限制了其在医学上的应用。在本研究中,为了提高GelMA水凝胶的机械强度,我们制备了一种基于F127二丙烯酸酯(F127DA)和GelMA的复合水凝胶,然后进行冷冻干燥和单宁酸(TA)处理。在这种复合水凝胶中,F127DA可以自组装成纳米胶束作为单体聚合的交联中心,由于胶束的协同变形和物理结合的内部重排,这在水凝胶中提供了额外的能量耗散。将复合水凝胶冷冻干燥后,形成多孔水凝胶。TA的后续处理可以扩散到水凝胶内部,并通过氢键与水凝胶反应,从而显著增强力学性能。所获得的水凝胶的最大拉伸变形是GelMA的大约11倍。这项工作展示了一种增强3D打印的GelMA水凝胶力学性能的方法,该方法在生物打印中具有很好的应用前景。
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