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首页> 外文期刊>Biomacromolecules >Improving the Environment for Immobilized Dehydrogenase Enzymes by Modifying Nafion with Tetraalkylammonium Bromides
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Improving the Environment for Immobilized Dehydrogenase Enzymes by Modifying Nafion with Tetraalkylammonium Bromides

机译:通过用四烷基溴化铵修饰Nafion来改善固定化脱氢酶的环境

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Recent research in our group has shown that mixture-casting Nafion with quaternary ammonium bromides can increase the electrochemical flux of redox couples through the membrane and allow for larger redox species to diffuse to the electrode surface.The research has also suggested that when these salts are cast with Nafion micellar pore size is changing.Therefore,it was proposed that the quaternary ammonium salts could be employed to tailor the structure of the Nafion membrane for immobilizing enzymes in the polymer.For cations with a high affinity for the sulfonic acid groups of Nafion,the modified structure of Nafion can also help to stabilize the enzyme and increase activity by providing a protective outer shell and an ideal chemical environment that resists a decrease in pH within the pore structure.This research examines the ability to immobilize dehydrogenase enzymes in Nafion that has been modified with quaternary ammonium bromides.Fluorescence assays,fluorescence microscopy,and cyclic voltammetric studies were employed to analyze the ability to immobilize an enzyme within the membrane,to determine the activity of the immobilized enzyme and to examine the transport of coenzyme within the membrane.Dehydrogenase enzymes immobilized in tetrabutylammonium bromide/Nafion membranes have shown high catalytic activity and enzyme active lifetimes of greater than 45 days.A variety of dehydrogenase enzymes have been successfully immobilized in the membrane,including:alcohol dehydrogenase,aldehyde dehydrogenase,glucose dehydrogenase,and lactic dehydrogenase.
机译:我们小组的最新研究表明,将Nafion与溴化季铵盐混合浇铸可以增加氧化还原对通过膜的电化学通量,并允许更大的氧化还原物质扩散到电极表面。因此,有人提出可以使用季铵盐来修饰Nafion膜的结构,以将酶固定在聚合物中。对于与Nafion磺酸基团具有高亲和力的阳离子,Nafion的修饰结构还可以通过提供保护性外壳和抵抗孔结构内pH降低的理想化学环境来帮助稳定酶并增加活性。本研究研究了将Nafion固定化脱氢酶的能力,已被季铵溴化物修饰。荧光测定,荧光显微镜和c循环伏安法用于分析将酶固定在膜内的能力,确定固定化酶的活性以及检查辅酶在膜内的运输。固定在溴化四丁基铵/ Nafion膜上的脱氢酶显示出高催化活性脱氢酶被成功地固定在膜上,包括:乙醇脱氢酶,醛脱氢酶,葡萄糖脱氢酶和乳酸脱氢酶。

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