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首页> 外文期刊>IEEE sensors journal >Real-Time Electrochemical Measurement of N-Acetyl-ß-D-Glucosaminidase Activity, Using Redox-Tagged N-Acetyl-ß-D-Glucosaminide Hydrolysis as Proof-of-Principle
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Real-Time Electrochemical Measurement of N-Acetyl-ß-D-Glucosaminidase Activity, Using Redox-Tagged N-Acetyl-ß-D-Glucosaminide Hydrolysis as Proof-of-Principle

机译:N-乙酰-β-D-葡糖胺酶活性的实时电化学测量,使用氧化铜标记的N-乙酰-β-D-葡糖胺水解作为原则上的原则

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摘要

In-situ amperometry was used as a convenient non-optical tool for the assessment of the chitooligosaccharide-hydrolyzing activity of N-acetyl-beta-D-glucosaminidase from the marine Vibrio harveyi (VhGlcNAcase). Signal generation used a 3-mm-diameter boron-doped diamond (BDD) electrode for the anodic oxidation of 4-methylumbelliferone (4MU), which is released from the model substrate 4-methylumbelliferyl-N-acetyl-beta-D-glucosaminide (GlcNAc-4MU) by enzymic hydrolysis. The recorded rise in 4MU electrode current reported the release of the redox label in real time and amperometric data analysis reproduced the Michaelis-Menten VhGlcNAcase activity plots derived from standard spectroscopic assays. Since it provides continuous readout, amperometry avoids the use of reaction-stopping chemicals and is also practical in turbid test solutions. Furthermore, the established electrochemical enzyme activity assay offers the chance to study novel substrate-attached redox tags and to explore assay miniaturization through implementation in microfluidic devices, enables portable assay development through the use of mini-potentiostats with smart phone/tablet connectivity and aids assay automation through combination with platforms for robotic electrochemistry.
机译:原位安培测量用作方便的非光学工具,用于评估N-乙酰β-D-葡糖苷酶的氯寡核苷酸水解酶从海洋弧菌哈韦西(VHGLCNAC酶)的水解酶的评估。信号产生用于4-甲基纤维素(4Mu)的阳极氧化的3mm直径的硼掺杂金刚石(BDD)电极,其从模型衬底4-甲基蛋白酶-N-乙酰基 - β-D-葡糖苷蛋白酶释放( GLCNAC-4MU)通过酶水解。 4Mu电极电流的记录升高报告了实时氧化还原标签的释放,并且电流数据分析再现衍生自标准光谱测定的MICHAELIS-MENTEN VHGLCNACAS活性图。由于它提供连续读数,但安培测量避免使用反应停止化学品,并且在浑浊试验溶液中也是实用的。此外,所建立的电化学酶活性测定提供了研究新型衬底附着的氧化还原标签的机会,并通过在微流体装置中实现探索测定小型化,通过使用迷你电位器具有智能手机/平板电脑连接和艾滋病测定,使便携式测定开发能够实现通过与机器人电化学平台的组合自动化。

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