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首页> 外文期刊>Journal of Materials Science >Urease adsorption immobilization on ionic liquid-like macroporous polymeric support
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Urease adsorption immobilization on ionic liquid-like macroporous polymeric support

机译:离子液体样大孔聚合物载体对尿素吸附固定

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摘要

In this work, we report the synthesis and application of polymeric macroporous materials functionalized with ionic liquid (IL)-like moieties to serve as a support for enzyme immobilization. The method was based on bottom-up approach, where poly(styrene-divinylbenzene) (PS-DVB) nanoparticles were used as building blocks to form porous structures. Surface functionalization was done by introducing 1-butyl imidazole into the PS-DVB support to form IL-like imidazolium, which was consequently used for enzyme adsorption immobilization on the porous surface. To demonstrate activity of immobilized enzyme, hydrolysis of urea catalyzed by Jack bean urease was used as a model reaction. The enzymatic activity of the urease to convert urea solution into carbon dioxide (hydrocarbonates in water solution) and ammonia under acidic conditions were monitored both by measuring changes in pH and by a color change in cresol red pH indicator. The immobilized urease was able to provide hydrolysis of urea solution for 30 days while maintaining its activity over 100% compared to free enzyme solution. The activity of freshly immobilized enzyme was increased up to 285% compared to free urease solution under acidic conditions, which is caused by an acidic shift of activity-pH bell-shaped curve. Prepared porous material with immobilized urease was able to undergo four consequent cycles over the period of 4 days with only 15% decrease in activity. Overall, the results indicated that the polymeric support is well suitable to combine the advantages of macroporous material with IL-like surface moieties for enzyme immobilization and its consequent application in bio-catalytic reactions.
机译:在这项工作中,我们报告样结构部分的合成,并用离子液体(IL)官能化聚合大孔材料的应用,以作为酶固定化的支持体。该方法是基于自下而上的方法,其中聚(苯乙烯 - 二乙烯基苯)(PS-DVB)的纳米颗粒被用作积木以形成多孔结构。表面官能化通过将1-丁基咪唑成PS-DVB载体上以形成IL-像咪唑,将其结果用于在多孔表面上酶的固定化的吸附进行。为了证明固定化酶的活性,尿素由刀豆脲酶催化水解作为模型反应。在酸性条件下的脲酶转换尿素溶液成二氧化碳(在水中的溶液碳酸氢盐)和氨的酶的酶活性均被通过测量pH值的变化,并通过在甲酚红pH指示剂的颜色变化进行监测。的固定的尿素酶是能够为30天提供的尿素溶液水解,同时保持其活性超过100%相比,游离酶溶液。新鲜的固定化酶的活性增加至285%,较酸性条件下自由脲酶溶液,它是由活性pH值的钟形曲线的酸性移造成的。与固定的尿素酶制备的多孔材料能够在4天期间经历4个随之周期只有15在活动%的下降。总的来说,结果表明,该聚合物载体是非常适合于大孔材料的优点与IL-状表面的部分为酶固定化和在生物催化反应中其随之而来的应用相结合。

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  • 来源
    《Journal of Materials Science 》 |2019年第24期| 共13页
  • 作者单位

    Univ Chem &

    Technol Dept Chem Engn Tech 3 Prague 16628 6 Czech Republic;

    Univ Chem &

    Technol Dept Chem Engn Tech 3 Prague 16628 6 Czech Republic;

    Univ Chem &

    Technol Dept Chem Engn Tech 3 Prague 16628 6 Czech Republic;

    Univ Chem &

    Technol Dept Chem Engn Tech 3 Prague 16628 6 Czech Republic;

    Univ Chem &

    Technol Dept Phys &

    Measurements Tech 3 Prague 16628 6 Czech Republic;

    Univ Chem &

    Technol Dept Inorgan Technol Tech 5 Prague 16628 6 Czech Republic;

    Univ Chem &

    Technol Dept Chem Engn Tech 3 Prague 16628 6 Czech Republic;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学 ;
  • 关键词

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