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Cartilage tissue healing and regeneration based on biocompatible materials: a systematic review and bibliometric analysis from 1993 to 2022

Affiliation
Department of Orthopaedic Surgery ,The Third Hospital of Hebei Medical University ,Shijiazhuang ,Hebei ,China
Yao, Meng-Xuan;
Affiliation
Department of Orthopaedic Surgery ,The Third Hospital of Hebei Medical University ,Shijiazhuang ,Hebei ,China
Zhang, Yi-Fan;
Affiliation
Department of Pharmacy ,Cangzhou People’s Hospital ,Cangzhou ,China
Liu, Wei;
Affiliation
Department of Orthopaedic Surgery ,The Third Hospital of Hebei Medical University ,Shijiazhuang ,Hebei ,China
Wang, Hai-Cheng;
Affiliation
Department of Orthopaedic Surgery ,The Third Hospital of Hebei Medical University ,Shijiazhuang ,Hebei ,China
Ren, Chuan;
Affiliation
Department of Orthopaedic Surgery ,The Third Hospital of Hebei Medical University ,Shijiazhuang ,Hebei ,China
Zhang, Yu-Qin;
Affiliation
Department of Orthopaedic Surgery ,The Third Hospital of Hebei Medical University ,Shijiazhuang ,Hebei ,China
Shi, Tai-Long;
Affiliation
Department of Orthopaedic Surgery ,The Third Hospital of Hebei Medical University ,Shijiazhuang ,Hebei ,China
Chen, Wei

Cartilage, a type of connective tissue, plays a crucial role in supporting and cushioning the body, and damages or diseases affecting cartilage may result in pain and impaired joint function. In this regard, biocompatible materials are used in cartilage tissue healing and regeneration as scaffolds for new tissue growth, barriers to prevent infection and reduce inflammation, and deliver drugs or growth factors to the injury site. In this article, we perform a comprehensive bibliometric analysis of literature on cartilage tissue healing and regeneration based on biocompatible materials, including an overview of current research, identifying the most influential articles and authors, discussing prevailing topics and trends in this field, and summarizing future research directions.

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License Holder: Copyright © 2024 Yao, Zhang, Liu, Wang, Ren, Zhang, Shi and Chen.

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