化学
戒毒(替代医学)
对氧磷酶
水解
亲核细胞
钙
吸附
组合化学
新陈代谢
路易斯酸
有机化学
立体化学
无机化学
活动站点
生物化学
作者
Wenxuan Jiang,Yu Wu,Weiqing Xu,Jingying Wang,Ying Zhou,Jian Li,Xin Yu,Wenhong Yang,Liuyong Hu,Li-Rong Zheng,Wenling Gu,Chengzhou Zhu,Wenxuan Jiang,Yu Wu,Weiqing Xu,Jingying Wang,Ying Zhou,Jian Li,Xin Yu,Wenhong Yang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2025-11-10
卷期号:25 (46): 16499-16506
标识
DOI:10.1021/acs.nanolett.5c04662
摘要
Organophosphorus compounds (OPs) are highly toxic to neural centers by causing irreversible damage, while the native neurometabolic system of mammals relying on paraoxonase 1 shows less detoxification efficiency. Personal protective equipment integrating nanozyme is promising to construct an artificial OP metabolism system for efficient detoxification, yet a robust nanozyme featuring nearly instantaneous detoxification is still vacant. Herein, a ceria nanozyme anchoring s-block atomic calcium sites (Ca-CeO2) is designed by mimicking paraoxonase 1 for OP hydrolytic detoxification with an ultrashort half-life of 1.64 min. The s-block Ca site with a strong Lewis acid is characterized by the broad p orbital, which is easier to couple with the orbital of O atoms in the phosphoryl group and nucleophilic hydroxyl group than the Ce site, enhancing the adsorption and attack on the substrate. Benefiting from the satisfying detoxification efficiency, a Ca-CeO2 metabolism system is successfully integrated into a protective mask for personal protection.
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