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NADH amperometric sensor based on poly(3-methylthiophene)-coated cylindrical carbon fiber microelectrodes: application to the enzymatic determination of L-lactate

机译:基于聚(3-甲基噻吩)包覆的圆柱形碳纤维微电极的NADH安培传感器:在酶法测定L-乳酸中的应用

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A NADH amperometric microsensor based on cylindrical carbon fiber microelectrodes (CFMEs) coated with poly(3-methylthiophene) (P3MT) is reported. Cyclic voltammograms for NADH showed an oxidation response at the P3MT-coated CFME 320 mV lower than that obtained at a conventional glassy carbon electrode. A higher resistance to the electrode fouling was observed when P3MT-coated CFMEs were compared with P3MT-coated GC electrodes of conventional size. A potential of +0.45 V was selected for the detection of NADH by amperometry in stirred solutions. The steady-state current was reached very rapidly (5-7 s), and the same modified micro-electrode could be used during a whole working day without any cleaning treatment. A linear calibration graph for NADH was obtained in the range 1.0 x 10(-6)-10 x 10(-4) mol l(-1) with a detection limit of 7.6 x 10(-7) mol l(-1). The influence of the presence of high concentrations of NAD(+) or ascorbic acid on the NADH amperometric response was also tested. An amperometric flow-cell adapted for the use of microelectrodes was designed. Improved signal-to-background ratios were obtained in this case, which allowed NADH amperometric measurements to be carried out at potentials lower than +0.45 V. Taking into account the influence of an excess of NAD(+) on the NADH response, a potential value of +0.30 V was selected. The stability of the polymer coating on the CFME was shown to be good in the carrier stream, and the analytical characteristics of the calibration graph were slightly better than those obtained by amperometry under batch conditions. A flow-injection method for the amperometric-enzymatic determination of L-lactate has been developed by using a reticulated vitreous carbon-based enzyme (lactate dehydrogenase) reactor inserted into the flow cell. Practically constant lactate responses were obtained over the first 8 d. A good selectivity for lactate was achieved against citric, malic, tartaric, and acetic acids, and ethanol. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 37]
机译:报道了一种NADH电流微传感器,该传感器基于涂覆有聚(3-甲基噻吩)(P3MT)的圆柱形碳纤维微电极(CFME)。 NADH的循环伏安图显示,在P3MT涂层的CFME 320 mV处的氧化反应低于在常规玻璃碳电极上获得的氧化反应。当将P3MT涂层的CFME与常规尺寸的P3MT涂层的GC电极进行比较时,观察到了更高的抗电极结垢性。选择+0.45 V的电位用于通过安培法在搅拌溶液中检测NADH。很快达到了稳态电流(5-7 s),并且可以在整个工作日中使用相同的修饰微电极,而无需进行任何清洁处理。在1.0 x 10(-6)-10 x 10(-4)mol l(-1)范围内获得NADH的线性校准图,检出限为7.6 x 10(-7)mol l(-1) 。还测试了高浓度的NAD(+)或抗坏血酸的存在对NADH电流响应的影响。设计了适用于微电极的安培型流通池。在这种情况下,获得了改进的信噪比,这使得可以在低于+0.45 V的电势下进行NADH安培测量。考虑到NAD(+)过量对NADH响应的影响,选择的值为+0.30V。 CFME上的聚合物涂层的稳定性在载流中显示出良好的效果,并且校准图的分析特性比在批处理条件下通过安培法获得的分析特性稍好。通过使用插入到流通池中的网状玻璃碳基酶(乳酸脱氢酶)反应器,开发了一种用于安培-酶法测定L-乳酸的流动注射方法。在最初的8天中获得了几乎恒定的乳酸反应。乳酸对柠檬酸,苹果酸,酒石酸和乙酸以及乙醇具有良好的选择性。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:37]

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