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An Artificial Supramolecular Nanozyme Based on β-Cyclodextrin-Modified Gold Nanoparticles

机译:基于β-环糊精修饰的金纳米粒子的人工超分子纳米酶

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摘要

An artificial nanozyme model was developed by the supramolecular complexation of a β-cyclodextrin-modified gold nanoparticle and metal catalytic centers. The cyclodextrin-based monolayer was first constructed on the surface of gold nanoparticle by using the thiol modified cyclodextrin, subsequently the cyclodextrin-modified gold nanoparticle was utilized as a backbone to install metal catalytic centers by supramolecular assembly of the copper complex of triethylnetetramine-adamantane and β-cyclo-dextrin receptors immobilized on the surface of gold nanospheres via hydrophobic interaction. The catalytic behaviors of β-cyclodextrin-modified gold nanoparticles with adjacent multi-metal catalytic centers were investigated as an esterase mimic. Strong hydrolase activities for catalyzing the cleavage of an active ester 4,4'-dinitrodi-phenyl carbonate (DNDPC) were observed. A detailed kinetic study on nanozyme-catalyzed hydrolysis of ester DNDPC has been described.
机译:通过超分子络合β-环糊精修饰的金纳米颗粒和金属催化中心,建立了人工纳米酶模型。首先使用硫醇修饰的环糊精在金纳米颗粒的表面上构建基于环糊精的单层膜,然后将环糊精修饰的金纳米颗粒用作主链,通过三乙基亚乙基四胺-金刚烷的铜配合物的超分子组装来安装金属催化中心。 β-环糊精受体通过疏水相互作用固定在金纳米球的表面。研究了β-环糊精修饰的纳米金与相邻多金属催化中心的催化行为,作为酯酶模拟物。观察到强水解酶催化活性酯4,4'-二硝基二苯基碳酸酯(DNDPC)裂解的活性。已经描述了对酯酶DNDPC的纳米酶催化水解的详细动力学研究。

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