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Study on properties of 3D-printed GelMA hydrogel scaffolds with different nHA contents

机译:不同nHA含量的3D打印GelMA水凝胶支架性能研究

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摘要

Biological 3D printing is a reliable technology for 3D printing bone repair scaffolds with simple operation, high efficiency, and relatively low cost. Gelatin methacryloyl (GelMA) hydrogels have attracted much attention due to their good biocompatibility, but the poor mechanical properties limit their application in bone reconstruction engineering. In this study, nano-hydroxyapatite (nHA) particles were added to GelMA hydrogels, and the performances of composite hydrogel scaffolds with different nHA contents were investigated in terms of rheological properties, light transmission properties, surface morphology, mechanical properties, and biocompatibility. The experimental results showed that the incorporation of nHA particles could effectively improve the printability and mechanical properties of the scaffolds, the scaffold fibers had better resistance to deformation, improved degradation rate, and biological experiments confirmed that nHA particles had no significant cytotoxicity. However, the addition of HA particles also reduced the light transmission properties of the slurry, and when its content exceeds a certain value, the hydrogel scaffolds show incomplete curing and eventually affect their test performance. The results can offer guidance and reference for the selection of ink and function for 3D printing bone repair scaffold.
机译:生物3D打印是一种可靠的3D打印骨修复支架技术,操作简单、效率高、成本相对较低。明胶甲基丙烯酰(GelMA)水凝胶因其良好的生物相容性而备受关注,但力学性能差限制了其在骨重建工程中的应用。本研究将纳米羟基磷灰石(nHA)颗粒添加到GelMA水凝胶中,从流变性能、透光性能、表面形貌、力学性能和生物相容性等方面考察了不同nHA含量的复合水凝胶支架的性能。实验结果表明,nHA颗粒的掺入能有效改善支架的可打印性和力学性能,支架纤维具有更好的抗变形能力,提高了降解率,生物实验证实nHA颗粒无显著的细胞毒性。然而,HA颗粒的加入也降低了浆料的透光性能,当其含量超过一定值时,水凝胶支架呈现不完全固化,最终影响其测试性能。研究结果可为3D打印骨修复支架的油墨选择和功能提供指导和参考。

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