Shaoxiong Feng, Jiayin Yu, Xi Gao, Lian Jun Tang, Zehong Yang, Xu Peng, Xixun Yu
Developing nanozymes with high catalytic activity at low concentrations while mimicking the function of superoxide dismutase (SOD) remains a challenge. Inspired by the structure of Cu/Zn-SOD in the human body, we construct Cu/Zn-MOFs using 2-methylimidazole assembly, aiming to replicate the structure and catalytic properties of natural SOD. More importantly, we introduce an ammonia-assisted interfacial modulation strategy. After just 120 seconds of NH3 exposure, the zeta potential increased from +6.8 ± 2.0 mV to +14.4 ± 1.2 mV, and the oxidation state of the central metal atoms decreased, which resulted in a 2-fold increase in SOD-like activity. The modified Cu/Zn-MOF exhibited >60% superoxide radical scavenging efficiency at a low concentration of 800 ng mL-1, demonstrating competitive performance compared to previous MOF-based SOD mimetics. Additionally, this nanozyme efficiently scavenges intracellular reactive oxygen species (ROS), regulates macrophage polarization, and promotes osteoimmunomodulation, suggesting its potential for application in bone regeneration and oxidative stress-related therapeutic strategies.