首页> 外文期刊>Protein and Peptide Letters >Development of an Electrochemical Biosensor for the Rapid Detection of Naphthalene Acetic Acid in Fruits by Using Air Stable Lipid Films with Incorporated Auxin-Binding Protein 1 Receptor
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Development of an Electrochemical Biosensor for the Rapid Detection of Naphthalene Acetic Acid in Fruits by Using Air Stable Lipid Films with Incorporated Auxin-Binding Protein 1 Receptor

机译:使用掺入生长素结合蛋白1受体的空气稳定脂质膜快速检测水果中萘乙酸的电化学生物传感器的开发

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This work describes the investigations of electrochemical interactions of naphthalene acetic acid (NAA) with stabilized lipid films supported on a methacrylate polymer on a glass fiber filter with incorporated auxin-binding protein 1 receptor for the development of a biosensor for the rapid detection of this compound in fruits. NAA was injected into the flowing streams of a carrier electrolyte solution, the flow of the electrolyte solution stops and an ion current transient was obtained; the magnitude of the signal was correlated to NAA concentration, which could be determined at the micromolar level. NAA preconcentrates at the lipid membrane surface which causes dynamic alterations of the electrostatic fields and phase structure of membranes. The response times were ca. 5 min and naphthalene acetic acid was determined at concentration levels of μM. The effect of potent interferences included a wide range of compounds. The results showed no interferences from these compounds in concentration levels usually found in real samples. The method was applied for the determination of NAA in fruits and the reproducibility of the method was checked in about 100 samples. A quantitative method for the detection of NAA in fruits that can be complimentary to HPLC methods is provided in the present paper. These lipid films can be used as portable sensors for the rapid detection of NAA in fruits by non-skilled personnel.
机译:这项工作描述了萘乙酸(NAA)与负载在玻璃纤维过滤器上的甲基丙烯酸酯聚合物上的稳定脂质膜的电化学相互作用的研究,该膜具有结合的生长素结合蛋白1受体,用于开发用于快速检测该化合物的生物传感器。在水果中。将NAA注入到载体电解质溶液的流动流中,电解质溶液的流动停止并且获得离子电流瞬变;信号的强度与NAA浓度相关,可以在微摩尔水平上确定。 NAA预浓缩在脂质膜表面,这会引起静电场和膜相结构的动态变化。响应时间约为5分钟后,测定萘乙酸的浓度为μM。强力干扰的影响包括多种化合物。结果表明,这些化合物对实际样品中通常存在的浓度水平没有干扰。该方法用于水果中NAA的测定,并在约100个样品中检查了该方法的重现性。本文提供了一种定量检测水果中NAA的方法,可以作为HPLC方法的补充。这些脂质膜可用作非熟练人员快速检测水果中NAA的便携式传感器。

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