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Layer-By-Layer Catalytic Interface for Electrochemical Detection of Multiple Substrates Featuring Bio-Functionalized Carbon Nanotubes

机译:逐层催化界面,用于多种基板的电化学检测,其具有生物官能化碳纳米管的多个基板

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Built upon previously gained knowledge, a novel, layer by layer assembled carbon nanotube sensor for detection of two analytes is discussed. The main idea is to functionalize the carbon nanotubes with different enzymes and bio-polymers to build a multifunctional series of interfaces, which are sensitive to their respective substrates. Organophosphorus hydrolase and glucose oxidase should be separately, covalently immobilized onto multi-walled carbon nanotubes (MWNT-OPH and MWMT-GOx) for catalytic hydrolysis of the model organophosphate, paraoxon (PX) and catalytic oxidation of β-D-glucose. The catalytic response of the different layers was characterized by amperometry with redox mediator. While the sensor to simultaneously detect both glucose and paraoxon is not inherently practical, the experiment shows the possibility for co-interfacing multiple enzymes on the same platform. This may be very important to allow for the detection of several substrates, through the use of numerous biocatalysts on separate layers. Additionally, this approach might be applied for systems where several biocatalysts are assembled to work in a consecutive mode and the product of previous reaction might be a substrate for the next one.
机译:讨论了在先前获得的知识,新颖的层,通过层组装的碳纳米管传感器进行了用于检测的两个分析物。主要思想是用不同酶和生物聚合物挥发碳纳米管,以构建多功能系列的界面,这对它们各自的基材敏感。有机磷水解酶和葡萄糖氧化酶应分别,共价固定在多壁碳纳米管(MWNT-OPH和MWMT-GOX)上,用于催化水解的有机磷酸酯,副植物(PX)和β-D-葡萄糖的催化氧化。通过用氧化还原介体的功率测定,表征了不同层的催化反应。虽然传感器同时检测到葡萄糖和糖氧化物并不是本质的实用,但实验表明了在同一平台上共同接地多种酶的可能性。这对于允许通过在单独的层上使用许多生物催化剂来检测几个基质可能非常重要。另外,这种方法可能适用于组装几种生物催化剂以连续模式工作的系统,并且先前反应的产物可能是下一个底物。

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