氧化应激
化学
超氧化物歧化酶
抗氧化剂
过氧化氢酶
细胞
细胞内
干细胞
机制(生物学)
纳米技术
巨噬细胞
氧化磷酸化
细胞生物学
人类健康
生物物理学
氧化损伤
活性氧
炎症反应
合理设计
细胞信号
作者
Shaoxiong Feng,Xu Peng,Xi Gao,Lianjun Tang,Xixun Yu
出处
期刊:Nanoscale
[Royal Society of Chemistry]
日期:2026-01-01
卷期号:18 (12): 6309-6320
摘要
Inflammatory bone defects pose a serious threat to human health and traditional stem cell therapies exhibit limited efficacy in addressing the high oxidative stress environment associated with such defects. Inspired by the response mechanism of the intracellular antioxidant defense system (IADS), we propose a metal-organic framework (MOF) nanozyme that mimics the structure of deep-sea lobster hemocyanin and found that its simulated activity of superoxide dismutase (SOD) and catalase (CAT) can be regulated through a chiral engineering strategy. By utilizing different chiral phenylalanine ligands, we rationally prepared Cu-Phe (D/L) (where D represents right-handed and L represents left-handed) nanozymes. Taking the optimal nanozyme as an example, studies show that Cu-Phe (L) can effectively clear ROS, protect and maintain broad cellular functionality in an oxidative stress microenvironment, and regulate the macrophage phenotype. We believe that the development of Cu-Phe (L) nanozymes based on a chiral molecule-dependent strategy can effectively reshape the oxidative stress microenvironment, enhance osteoimmune modulation, and promote stem cell osteogenic differentiation. The meticulously designed chiral Cu-Phe (D/L) provide instructive insights for the rational construction of MOF nanozymes and the treatment of inflammatory defects.
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