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Potentiometric detection of ATP based on the transmembrane proton gradient generated by ATPase reconstituted on a gold electrode

机译:基于ATP酶产生的ATP晶体质子梯度在金电极上重构的跨膜质子梯度进行电位检测

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Adenosine triphosphate (ATP) is a key molecule as energy vector for living organisms, therefore its detection reveals the presence of microbial colonies. Environments where the existence of microbial pathogens suppose a health hazard can benefit from real time monitoring of such molecule. We report a potentiometric biosensor based on ATP-synthase from Escherichia coli reconstituted in a floating phospholipid bilayer over gold electrodes modified with a 4-aminothiophenol self-assembled monolayer. The use of a pH-dependent redox probe on the electrode surface allows a simple, specific and reliable on site determination of ATP concentration from 1 mu M to 1 mM. The broad range ATP biosensor can offer an alternative way of measuring in a few minutes the presence of microbial contamination. (C) 2020 Elsevier B.V. All rights reserved.
机译:腺苷三磷酸(ATP)是作为生物体能量载体的关键分子,因此其检测揭示了微生物菌落的存在。 存在微生物病原体的存在,假设健康危害可以受益于对这些分子的实时监测。 我们通过从浮动磷脂双层在用4-氨噻吩自组装单层改性的金电极上重构的ATP合酶基于ATP合酶的电位生物传感器。 在电极表面上使用pH依赖的氧化还原探针允许在现场测定从1μm至1mm的ATP浓度的简单,具体可靠。 广泛的ATP生物传感器可以在几分钟内提供微生物污染的替代测量方法。 (c)2020 Elsevier B.V.保留所有权利。

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