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首页> 外文期刊>Analytical chemistry >Glucose-Oxidase Label-Based Redox Cycling for an Incubation Period-Free Electrochemical Immunosensor
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Glucose-Oxidase Label-Based Redox Cycling for an Incubation Period-Free Electrochemical Immunosensor

机译:基于葡萄糖氧化酶标记的氧化还原循环的无潜伏期电化学免疫传感器。

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Catalytic reactions of enzyme labels in enzyme-linked immunosorbent assays require a long incubation period to obtain high signal amplification. We present herein a simple immunosensing scheme in which the incubation period is minimized without a large increase in the detection limit. This scheme is based on electrochemical-enzymatic (EN) redox cycling using glucose oxidase (GOx) as an enzyme label, Ru(NH_3)_6~(3+) as a redox mediator, and glucose as an enzyme substrate. Fast electron mediation of Ru(NH_3)_6~(3+) between the electrode and the GOx label attached to the electrode allows high signal amplification. The acquisition of chronocoulometric charges at a potential in the mass transfer-controlled region excludes the influence of the kinetics of Ru(NH_3)_6~(2+) electrooxidation and also facilitates high signal-to-background ratios. The reaction between reduced GOx and Ru(NH_3)_6~(3+) is rapid even in air-saturated Tris buffer, where the faster competitive reaction between reduced GOx and dissolved oxygen also occurs. The direct electrooxidation of glucose at the electrode and the direct electron transfer between glucose and Ru(NH_3)_6~(3+) that undesirably increase background levels occur relatively slowly. The detection limit for the EN redox cycling-based detection of cancer antigen 125 (CA-125) in human serum is slightly higher than 0.1 U/mL for the incubation period of 0 min, and the detection limits for the incubation periods of 5 and 10 min are slightly lower than 0.1 U/mL, indicating that the detection limits are almost similar irrespective of the incubation period and that the immunosensor is highly sensitive.
机译:在酶联免疫吸附测定中酶标记的催化反应需要较长的孵育时间才能获得高信号放大率。我们在这里提出了一种简单的免疫传感方案,其中潜伏期被最小化而检测限没有大的增加。该方案基于使用葡萄糖氧化酶(GOx)作为酶标记,Ru(NH_3)_6〜(3+)作为氧化还原介体和葡萄糖作为酶底物的电化学酶(EN)氧化还原循环。 Ru(NH_3)_6〜(3+)在电极与附着在电极上的GOx标签之间的快速电子介导可实现高信号放大。在传质控制区域中的电位处获得计时容量电荷,排除了Ru(NH_3)_6〜(2+)电氧化动力学的影响,并且还促进了高的信噪比。即使在空气饱和的Tris缓冲液中,还原的GOx与Ru(NH_3)_6〜(3+)之间的反应也很快,在还原的GOx与溶解氧之间也发生了较快的竞争反应。葡萄糖在电极上的直接电氧化以及不希望有的背景水平升高的葡萄糖与Ru(NH_3)_6〜(3+)之间的直接电子转移相对缓慢地发生。在0分钟的潜伏期中,基于EN氧化还原循环的人血清中癌抗原125(CA-125)检测的检出限略高于0.1 U / mL,在5和5潜伏期的检出限10分钟略低于0.1 U / mL,这表明检测限几乎与培养潜伏期相似,并且免疫传感器高度敏感。

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