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作 者:Manoj Kumar Sarangi L.D Patel Goutam Rath Sitansu Sekhar Nanda Dong Kee Yi
机构地区:[1]Department of Pharmaceutics,Amity Institute of Pharmacy,Amity University,Lucknow 201313,India [2]Department of Pharmaceutics,Parul Institute of Pharmacy,Parul University,Vadodara 391760,India [3]Department of Pharmaceutics,School of Pharmaceutical Sciences,Siksha'O'Anusandhan University,Bhubaneswar 751030,India [4]Department of Chemistry,Myongji University,Yongin 03674,Republic of Korea
出 处:《Chinese Chemical Letters》2024年第11期155-171,共17页中国化学快报(英文版)
摘 要:Nanozymes are the paradigm for bridging inorganic nanomaterials with biology and environment for taking the spontaneous responsibilities to outplay natural enzymes.Metal-organic frameworks(MOFs) are mesoporous materials of inorganic-organic coordination,bearing ampoules of active/target sites and having the tendency to mimic natural enzymes.Thus MOF-based nanozymes(NZs) could be recognized for their tremendous potential for bio-catalysis.However,MOFs are of four types namely: modified MOFs,pristine MOFs,MOF-derived materials and MOFs comprised of natural enzymes.The MOFs-based NZ modulated via ultrasound,light,and heat revealed diversified applications.This article is concentrated on different methods for the preparation of MOF-based NZ for mimicking the responses of catalases,multifunctional enzymes,oxidases,superoxide dismutase,hydrolases,and peroxidases,progress and challenges of MOFs/MOF-based materials for exploiting their recent and futuristic approaches in biomedical sector.
关 键 词:MOF Nanozyme CATALYSIS BIOMEDICINE THERANOSTICS
分 类 号:R318.08[医药卫生—生物医学工程] TB383.1[医药卫生—基础医学]
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