3D-printed gradient scaffolds for osteochondral defects: Current status and perspectives

脚手架 软骨 生物医学工程 组织工程 软骨下骨 关节软骨 3D生物打印 透明软骨 材料科学 计算机科学 仿生学 3D打印 解剖 医学 骨关节炎 复合材料 病理 人工智能 替代医学
作者
Jianhang Du,Ziqing Zhu,Jia Liu,Xiaogang Bao,Qian Wang,Changgui Shi,Chaoqian Zhao,Guohua Xu,Dejian Li
出处
期刊:International Journal of bioprinting [Whioce Publishing Pte Ltd.]
卷期号:9 (4): 724-724 被引量:5
标识
DOI:10.18063/ijb.724
摘要

Articular osteochondral defects are quite common in clinical practice, and tissue engineering techniques can offer a promising therapeutic option to address this issue.The articular osteochondral unit comprises hyaline cartilage, calcified cartilage zone (CCZ), and subchondral bone.As the interface layer of articular cartilage and bone, the CCZ plays an essentialpart in stress transmission and microenvironmental regulation.Osteochondral scaffolds with the interface structure for defect repair are the future direction of tissue engineering. Three-dimensional (3D) printing has the advantages of speed, precision, and personalized customization, which can satisfy the requirements of irregular geometry, differentiated composition, and multilayered structure of articular osteochondral scaffolds with boundary layer structure. This paper summarizes the anatomy, physiology, pathology, and restoration mechanisms of the articular osteochondral unit, and reviews the necessity for a boundary layer structure in osteochondral tissue engineering scaffolds and the strategy for constructing the scaffolds using 3D printing. In the future, we should not only strengthen the basic research on osteochondral structural units, but also actively explore the application of 3D printing technology in osteochondral tissue engineering. This will enable better functional and structural bionics of the scaffold, which ultimately improve the repair of osteochondral defects caused by various diseases.

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