Diatomic iron nanozyme with lipoxidase-like activity for efficient inactivation of enveloped virus

Author:

Li Beibei,Ma Ruonan,Chen Lei,Zhou Caiyu,Zhang Yu-XiaoORCID,Wang Xiaonan,Huang Helai,Hu QikunORCID,Zheng Xiaobo,Yang JiaruiORCID,Shao Mengjuan,Hao Pengfei,Wu Yanfen,Che Yizhen,Li ChangORCID,Qin TaoORCID,Gao LizengORCID,Niu ZhiqiangORCID,Li Yadong

Abstract

AbstractEnveloped viruses encased within a lipid bilayer membrane are highly contagious and can cause many infectious diseases like influenza and COVID-19, thus calling for effective prevention and inactivation strategies. Here, we develop a diatomic iron nanozyme with lipoxidase-like (LOX-like) activity for the inactivation of enveloped virus. The diatomic iron sites can destruct the viral envelope via lipid peroxidation, thus displaying non-specific virucidal property. In contrast, natural LOX exhibits low antiviral performance, manifesting the advantage of nanozyme over the natural enzyme. Theoretical studies suggest that the Fe-O-Fe motif can match well the energy levels of Fe2 minority β-spin d orbitals and pentadiene moiety π* orbitals, and thus significantly lower the activation barrier of cis,cis-1,4-pentadiene moiety in the vesicle membrane. We showcase that the diatomic iron nanozyme can be incorporated into air purifier to disinfect airborne flu virus. The present strategy promises a future application in comprehensive biosecurity control.

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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