再生医学
再生(生物学)
纳米技术
机制(生物学)
生物医学
神经科学
材料科学
生物信息学
干细胞
生物
细胞生物学
物理
量子力学
作者
Xueheng Sun,Xu Xiang,Xiaokun Yue,Tianchang Wang,Zhaofei Wang,Changru Zhang,Jinwu Wang
标识
DOI:10.1002/adhm.202301924
摘要
Abstract With the discovery of the intrinsic enzyme‐like activity of metal oxides, nanozymes garner significant attention due to their superior characteristics, such as low cost, high stability, multi‐enzyme activity, and facile preparation. Notably, in the field of biomedicine, nanozymes primarily focus on disease detection, antibacterial properties, antitumor effects, and treatment of inflammatory conditions. However, the potential for application in regenerative medicine, which primarily addresses wound healing, nerve defect repair, bone regeneration, and cardiovascular disease treatment, is garnering interest as well. This review introduces nanozymes as an innovative strategy within the realm of bone regenerative medicine. The primary focus of this approach lies in the facilitation of osteochondral regeneration through the modulation of the pathological microenvironment. The catalytic mechanisms of four types of representative nanozymes are first discussed. The pathological microenvironment inhibiting osteochondral regeneration, followed by summarizing the therapy mechanism of nanozymes to osteochondral regeneration barriers is introduced. Further, the therapeutic potential of nanozymes for bone diseases is included. To improve the therapeutic efficiency of nanozymes and facilitate their clinical translation, future potential applications in osteochondral diseases are also discussed and some significant challenges addressed.
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