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Pyrroloquinoline quinone glucose dehydrogenase adopted in thermometric analysis for enhancement of glucose determination

机译:吡咯喹啉醌葡萄糖脱氢酶采用温度分析,提高葡萄糖测定

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摘要

A broad measurement range of glucose is often required in clinical analysis, especially for diabetic patients where glucose levels can be very high. Pyrroloquinoline quinone glucose dehydrogenase (PQQGDH) has previously been used in electrochemical quantification of glucose with an extended linear range. However, in real sample determination of glucose, interferences from electroactive substances in blood are unavoidable. Calorimetric biosensors, e.g., the Enzyme Thermistor, are insensitive to either directly electroactive or optical interferences often present in real clinical samples. This paper describes a novel analytical strategy where the intrinsic advantages of PQQGDH are combined with the Enzyme Thermistor as biosensor using calorimetric detection as general measurement principle. When compared with the most frequently used enzyme glucose oxidase, PQQGDH has a higher catalytic efficiency and is insensitive to the availability of oxygen. The use of calorimetry in this context resulted in a broad linear range of glucose measurements, from 0.009 to 100mM, an excellent specificity and insignificant side effects of compounds present in blood at high concentrations, such as lactate and urea.
机译:临床分析中通常需要宽测量范围的葡萄糖,特别是对于糖尿病患者可以非常高的糖尿病患者。吡咯恶喹啉醌葡萄糖脱氢酶(PQQGDH)先前已被用于具有延长线性范围的葡萄糖的电化学定量。然而,在真实的样品测定葡萄糖的测定中,血液中电活性物质的干扰是不可避免的。量化生物传感器,例如酶热敏电阻对通常存在于真实临床样品中的直接电活性或光学干扰不敏感。本文介绍了一种新的分析策略,其中PQQGDH的内在优点与酶热敏电阻与酶热敏电阻一起使用量传感器作为一般测量原理。与最常用的酶葡萄糖氧化酶相比,PQQGDH具有较高的催化效率,并且对氧的可用性不敏感。在这种情况下使用量热法导致葡萄糖测量的宽线性范围,从0.009至100mm,血液中血液中存在的优异特异性和微不足道的副作用,例如乳酸和尿素。

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