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Direct electrochemistry of alcohol oxidase using multiwalled carbon nanotube as electroactive matrix for biosensor application

机译:以多壁碳纳米管为电活性基质的乙醇氧化酶直接电化学在生物传感器中的应用

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Rapid detection of alcohol is important in clinical diagnosis and fermentation industry. An octameric alcohol oxidase (AOx) (Mr 675kDa) from Pichia pastoris, immobilized on multiwalled carbon nanotubes-Nafion (MWCNT-Nf) matrix and encapsulated with polyethylenimine (PEI) on gold electrode (AuE), showed a redox peak at 0.21V (vs. Ag/AgCl electrode at pH 7.5) for oxidation of alcohol. The electron transfer rate constant and surface coverage of the immobilized AOx were 1.69±0.15s ~(-1) and 2.43×10 ~(-12)molcm ~(-2), respectively. Studies on response and kinetics of Au-MWCNTNfAOx-PEI bioelectrodes for alcohol showed a linear response in the range of 8μM-42μM, response time of 55s for steady state current, and detection limit of 5μM. The bioelectrode retains ~90% of the original response even after four weeks when stored in potassium phosphate buffer pH 7.5 at 4°C. The fabricated bioelectrode was found to exclude interference caused by the common electroactive species such as ascorbic acid, uric acid, lactic acid, glucose and urea. The bioelectrode also showed reliable response characteristics in blood serum samples. The findings of the investigation have established the direct electrochemistry of the AOx protein and its potential biosensor application for quantitative detection of alcohol in blood serum.
机译:酒精的快速检测在临床诊断和发酵行业中很重要。巴斯德毕赤酵母的八聚醇氧化酶(AOx)(Mr 675kDa),固定在多壁碳纳米管-Nafion(MWCNT-Nf)基质上,并在金电极(AuE)上用聚乙烯亚胺(PEI)封装,在0.21V(相对于pH 7.5的Ag / AgCl电极)进行酒精氧化。固定化AOx的电子传递速率常数和表面覆盖率分别为1.69±0.15s〜(-1)和2.43×10〜(-12)molcm〜(-2)。 Au-MWCNTNfAOx-PEI生物电极对酒精的响应和动力学研究表明,线性响应范围为8μM-42μM,稳态电流响应时间为55s,检测极限为5μM。当在4°C下储存在pH 7.5的磷酸钾缓冲液中四周后,该生物电极仍能保持约90%的原始响应。发现所制造的生物电极排除了由诸如抗坏血酸,尿酸,乳酸,葡萄糖和尿素的普通电活性物质引起的干扰。该生物电极还在血清样品中显示出可靠的响应特征。研究的结果建立了AOx蛋白的直接电化学及其在定量检测血清酒精中潜在的生物传感器应用。

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