首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Mesoporous titania thin films as efficient enzyme carriers for paraoxon determination/detoxification: effects of enzyme binding and pore hierarchy on the biocatalyst activity and reusability
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Mesoporous titania thin films as efficient enzyme carriers for paraoxon determination/detoxification: effects of enzyme binding and pore hierarchy on the biocatalyst activity and reusability

机译:中孔二氧化钛薄膜可作为有效的酶载体用于对氧磷的测定/解毒:酶结合和孔结构对生物催化剂活性和可重复使用性的影响

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摘要

In this work we demonstrate the efficient immobilization of histidine 6-tagged organophosphate hydrolase(His_6–OPH), an organophosphate-degrading enzyme, on mesoporous titania thin films. This permits the use of the biocatalyst films as efficient tools in the detection/detoxification of paraoxon. His_6–OPH was immobilized on mesoporous thin films with uniform (9 nm) and bimodal (13–38 nm) pore size distribution, through covalent attachment and physical adsorption. The biocatalyst films show good activity, and enhanced stability with respect to the free enzyme at extreme conditions of pH and temperature, especially around neutral pH and room temperature. In addition, the bioactive films can be easily separated from the reaction media and reused multiple times without significant loss of activity.
机译:在这项工作中,我们证明了将组氨酸6标记的有机磷酸酯水解酶(His_6-OPH)(一种有机磷酸酯降解酶)有效地固定在中孔二氧化钛薄膜上。这允许将生物催化剂膜用作对氧磷的检测/解毒的有效工具。 His_6-OPH通过共价键合和物理吸附固定在孔径均匀(9 nm)和双峰(13-38 nm)的介孔薄膜上。在极端的pH和温度条件下,尤其是在中性pH和室温下,该生物催化剂膜显示出良好的活性,并且对游离酶的稳定性增强。另外,可以容易地将生物活性膜与反应介质分离并多次重复使用而不会显着降低活性。

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