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Enzyme@bismuth-ellagic acid:a versatile platform for enzyme immobilization with enhanced acid-base stability
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作者 Junyang Xu Guanhua Liu +6 位作者 Ying He Liya Zhou Li Ma Yunting Liu Xiaobing Zheng Jing Gao Yanjun Jiang 《Frontiers of Chemical Science and Engineering》 SCIE EI CSCD 2023年第6期784-794,共11页
In situ encapsulation is an effective way to synthesize enzyme@metal–organic framework biocatalysts;however,it is limited by the conditions of metal–organic framework synthesis and its acid-base stability.Herein,a b... In situ encapsulation is an effective way to synthesize enzyme@metal–organic framework biocatalysts;however,it is limited by the conditions of metal–organic framework synthesis and its acid-base stability.Herein,a biocatalytic platform with improved acid-base stability was constructed via a one-pot method using bismuth-ellagic acid as the carrier.Bismuth-ellagic acid is a green phenol-based metal–organic framework whose organic precursor is extracted from natural plants.After encapsulation,the stability,especially the acid-base stability,of amyloglucosidases@bismuth-ellagic acid was enhanced,which remained stable over a wide pH range(2–12)and achieved multiple recycling.By selecting a suitable buffer,bismuth-ellagic acid can encapsulate different types of enzymes and enable interactions between the encapsulated enzymes and cofactors,as well as between multiple enzymes.The green precursor,simple and convenient preparation process provided a versatile strategy for enzymes encapsulation. 展开更多
关键词 bismuth-ellagic acid in situ encapsulation enzyme@mof biocomposites
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