Advanced strategies of scaffolds design for bone regeneration

Author:

Song Jian1,Li Longfei1,Fang Lei1,Zhang Enshuo1,Zhang Yu1,Zhang Zhuxuan1,Vangari Pranav2,Huang Yaqin1,Tian Feng1,Zhao Yu3,Chen Wei2,Xue Jiajia1ORCID

Affiliation:

1. Beijing Laboratory of Biomedical Materials State Key Laboratory of Organic‐Inorganic Composites Beijing University of Chemical Technology Beijing China

2. Department of Physics University of Texas at Arlington Arlington Texas USA

3. Department of Orthopaedics Peking Union Medical College Hospital Chinese Academy of Medical Sciences Beijing China

Abstract

AbstractBone defects are encountered substantially in clinical practice, and bionic scaffolds represent a promising solution for repairing bone defects. However, it is difficult to fabricate scaffolds with bionic structures and reconstruct the microenvironment to fulfill the satisfying repair effects. In this review article, we first discuss various strategies for the design and construction of bionic scaffolds to promote bone defect repair, especially including the structural construction of the scaffold and the integration of bioactive substances together with the application of external stimuli. We then discuss the roles of artificial intelligence and medical imaging in aiding clinical treatment. Finally, we point out the challenges and future outlooks in developing multifunctional bone repair scaffolds, aiming to provide insights for improving bone regeneration efficacy and accelerating clinical translation.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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