Human cartilage tissue can be categorized into three types: hyaline cartilage, elastic cartilage and fibrocartilage. Each type of cartilage tissue possesses unique properties and functions, which presents a significant challenge for the regeneration and repair of damaged tissue. Bionics is a discipline in which humans study and imitate nature. A bionic strategy based on comprehensive knowledge of the anatomy and histology of human cartilage is ex-pected to contribute to fundamental study of core elements of tissue repair. Moreover, as a novel tissue-engineered technology, 3D bioprinting has the distinctive advantage of the rapid and precise construction of targeted models. Thus, by selecting suitable materials, cells and cytokines, and by leveraging advanced printing technology and bionic concepts, it becomes possible to simultaneously realize multiple beneficial properties and achieve improved tissue repair. This article provides an overview of key elements involved in the combination of 3D bioprinting and bionic strategies, with a particular focus on recent advances in mimicking different types of cartilage tissue.
基金:
National Natural Science Foundation of China [82272473, 82202687]
第一作者机构:[1]Capital Med Univ, Beijing Tongren Hosp, Dept Foot & Ankle Surg, Beijing 100730, Peoples R China
通讯作者:
推荐引用方式(GB/T 7714):
Zhou Jian,Li Qi,Tian Zhuang,et al.Recent advances in 3D bioprinted cartilage-mimicking constructs for applications in tissue engineering[J].MATERIALS TODAY BIO.2023,23:doi:10.1016/j.mtbio.2023.100870.
APA:
Zhou, Jian,Li, Qi,Tian, Zhuang,Yao, Qi&Zhang, Mingzhu.(2023).Recent advances in 3D bioprinted cartilage-mimicking constructs for applications in tissue engineering.MATERIALS TODAY BIO,23,
MLA:
Zhou, Jian,et al."Recent advances in 3D bioprinted cartilage-mimicking constructs for applications in tissue engineering".MATERIALS TODAY BIO 23.(2023)