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通过 3D 打印利用胶原纤维的定向排列来增强矿化胶原支架的机械性能和成骨性能。

Harnessing oriented arrangement of collagen fibers by 3D printing for enhancing mechanical and osteogenic properties of mineralized collagen scaffolds.

机构信息

Department of Biomedical Engineering, Research Center for Nano-biomaterials & Regenerative Medicine, College of Biomedical Engineering, Taiyuan University of Technology, Taiyuan 030024, People's Republic of China.

Shanxi-Zheda Institute of Advanced Materials and Chemical Engineering, Taiyuan 030032, People's Republic of China.

出版信息

Biomed Mater. 2024 Jun 7;19(4). doi: 10.1088/1748-605X/ad5244.

Abstract

As the structural basis of connective and load-bearing tissues, collagen fibers with orientation play an important role in the mechanical properties and physiological and biochemical functions of the tissues, but viable methods for preparing scaffolds with highly oriented collagenous structure still need to be further studied. In this study, pure collagen was used as printing ink to 3D printing. Harnessing oriented collagen fiber structure by 3D printing for promoting mechanical and osteogenic properties of scaffolds. The scaffolds with different printed angles and thicknesses were prepared to fit the bone defect site and realize personalized customization. The orientation assembly of collagen fibers was promoted by shear force action of 3D printing, the regular arrangement of collagen fibers and stabilization of fiber structure were promoted by pH adjustment and glutaraldehyde cross-linking, and the collagen fibers were mineralized by cyclic mineralization method. The microscopic morphology of fiber arrangement in the scaffolds were investigated by scanning electron microscopy. Results demonstrated that collagen fibers were changed from non-oriented to oriented after 3D printing. And the tensile modulus of the scaffolds with oriented collagen fibers was nine times higher than that of the scaffolds with non-oriented fibers. Moreover, the effects of oriented collagen fibers on the proliferation, differentiation and mineralization of MC3T3-E1 cells were studied by CCK-8 assay, live/dead cell staining, alkaline phosphatase activity test, and Alizarin red staining. The results indicated that cell proliferation, differentiation and mineralization were significantly promoted by oriented collagen fibers, and the cells proliferated directionally in the direction of the fibers. Taken together, mineralized collagen fiber scaffolds with oriented collagen fibers have great potential in bone tissue engineering applications.

摘要

作为连接组织和承重组织的结构基础,具有取向的胶原纤维在组织的机械性能和生理生化功能中起着重要作用,但仍需要进一步研究制备具有高度取向胶原结构支架的可行方法。在这项研究中,使用纯胶原蛋白作为打印墨水进行 3D 打印。通过 3D 打印利用取向胶原纤维结构来促进支架的机械和成骨性能。制备了不同打印角度和厚度的支架,以适应骨缺损部位并实现个性化定制。通过 3D 打印的剪切力作用促进胶原纤维的取向组装,通过 pH 值调节和戊二醛交联促进胶原纤维的规则排列和纤维结构的稳定,并通过循环矿化法使胶原纤维矿化。通过扫描电子显微镜研究了支架中纤维排列的微观形貌。结果表明,3D 打印后胶原纤维从无取向变为取向。并且具有取向胶原纤维的支架的拉伸模量比具有无取向纤维的支架高九倍。此外,通过 CCK-8 测定、活/死细胞染色、碱性磷酸酶活性试验和茜素红染色研究了取向胶原纤维对 MC3T3-E1 细胞增殖、分化和矿化的影响。结果表明,取向胶原纤维显著促进细胞增殖、分化和矿化,细胞沿纤维方向定向增殖。总之,具有取向胶原纤维的矿化胶原纤维支架在骨组织工程应用中具有巨大的潜力。

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