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A study on electrode for amperometric measurement of human stress with flow injection analysis biosensing system

机译:流动注射分析生物传感系统用于人体压力安培测量的电极研究

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This paper presents a study on electrode for the amperometric detection of human stress based on salivary alpha amylase, emulated with different concentration of glucose, with the flow injection analysis biosensing system. Amperometric detection is an electrochemical voltammetric measurement approach, where the current intensity in a detection cell is regarded as a function of the concentration of the analyte. Flow injection analysis is a chemical analysis method that injects a test sample into a flowing carrier stream. The screen printed electrode is used to detect the amount of glucose concentration, which is proportional to the amount of output current. The objective of the study is to conduct a comparative study between the gold and carbon electrode, as a choice for amperometric detection of human stress with flow injection analysis biosensing system. It has been found that, the [initial, steady state current output at first injection of glucose, current output at second injection of glucose] for carbon and gold printed electrode are [0–80, 0–20, 0–20] μA and [0–35, 0–10, 0–5] μA respectively. This shows measurement resolution of the carbon screen printed electrode is better, which results in higher measurement sensitivity. However, it is found that the gold printed electrode exhibits higher rate of reaction with the steeper gradients and the current reaches its steady state values faster. Yet, in view of the cost, the gold printed electrode is about three times more than the carbon printed electrode and also the ease in handling the zero baseline, the latter is thus made as the choice electrode.
机译:本文介绍了一种基于唾液α淀粉酶的电流安培检测电极的研究,该电极模拟了不同浓度的葡萄糖,并采用流动注射分析生物传感系统。安培检测是一种电化学伏安测量方法,其中检测池中的电流强度被视为分析物浓度的函数。流动注射分析是一种化学分析方法,可以将测试样品注射到流动的载流中。丝网印刷电极用于检测与输出电流量成正比的葡萄糖浓度。该研究的目的是在金电极和碳电极之间进行比较研究,以作为通过流动注射分析生物传感系统进行安培检测人体压力的一种选择。已经发现,碳和金印刷电极的[第一次注入葡萄糖时的初始稳态电流输出,第二次注入葡萄糖时的电流输出]为[0–80、0–20、0–20]μA和分别为[0–35、0–10、0–5]μA。这表明碳丝网印刷电极的测量分辨率更好,从而导致更高的测量灵敏度。然而,发现金印刷电极在较陡的梯度下表现出更高的反应速率,并且电流更快地达到其稳态值。然而,考虑到成本,金印刷电极是碳印刷电极的约三倍,并且也易于处理零基线,因此将其作为选择电极。

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