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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Sensitive amperometric biosensor for the determination of biogenic and synthetic amines using pea seedlings amine oxidase: A novel approach for enzyme immobilization
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Sensitive amperometric biosensor for the determination of biogenic and synthetic amines using pea seedlings amine oxidase: A novel approach for enzyme immobilization

机译:使用豌豆幼苗胺氧化酶测定生物和合成胺的灵敏安培生物传感器:酶固定的新方法

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摘要

We prepared a new inorganic sorbent based on modified triazine (2-[4,6-bis (aminoethylamine)-1,3,5-triazine]-Silasorb; BAT-Silasorb) which binds pea seedlings amine oxidase (PSAO) very tightly without loss of its catalytic activity. This unique feature as well as the wide substrate specificity of PSAO was successfully utilized in the construction of an amperometric biosensor based on a carbon paste electrode for the fast and sensitive detection of various amines at a formal potential 0 mV versus Ag/AgCl reference electrode. The reaction layer of the biosensor is created by the direct immobilization of PSAO at the electrode surface via affinity carrier BAT-Silasorb. Used arrangement facilitates a simple restoration of the inactive biosensor. An amperometric signal results from horseradish peroxidase catalyzed reduction of H sub(2)O sub(2), a secondary product of the oxidative deamination of amines, catalyzed by PSAO. The sensor was used for the basic characterization of 55 biogenic and synthetic amines, from numerous mono-, di- and polyamines to various hydroxy-, thio-, benzyl- and aromatic derivatives in order to establish its suitability as a postcolumn detector. Its high sensitivity to putrescine 20.0 plus or minus 0.64 mA 1 super(-1) per mol (636.9 plus or minus 2.03 mA 1 super(-1) per mol per cm super(2)), a limit of detection of 10 nmol 1 super(-1) (determined with respect to a signal-to-noise ratio 3:1), a linear range of current response to 0.01-100 mu mol 1 super(-1) concentration of substrate and good reproducibility all indicate that the sensor could be applied to future industrial and clinical analyses.
机译:我们基于修饰的三嗪(2- [4,6-双(氨基乙胺)-1,3,5-三嗪] -Silasorb; BAT-Silasorb)制备了一种新的无机吸附剂,该吸附剂非常紧密地结合豌豆幼苗的胺氧化酶(PSAO)而没有失去其催化活性。 PSAO的这一独特功能以及广泛的底物特异性已成功用于基于碳糊电极的安培生物传感器的构建中,用于相对于Ag / AgCl参比电极以0 mV的形式电势快速,灵敏地检测各种胺。生物传感器的反应层是通过亲和载体BAT-Silasorb将PSAO直接固定在电极表面而形成的。使用的布置有助于无活性生物传感器的简单恢复。辣根过氧化物酶催化的Hsub(2)Osub(2)的还原反应产生了安培信号,Hsub(2)Osub(2)是PSAO催化的胺氧化脱氨反应的副产物。该传感器用于从多种单胺,二胺和多胺到各种羟基,硫代,苄基和芳族衍生物的55种生物胺和合成胺的基本表征,以建立适用于柱后检测器的性能。对腐胺20.0正负0.64 mA 1超级(-1)/ mol(636.9正负2.03 mA 1超级(-1)/ mol每厘米super(2)的高灵敏度,检出限为10 nmol 1 super(-1)(相对于信噪比3:1确定),对0.01-100μmol 1 super(-1)底物浓度的电流响应的线性范围和良好的重现性均表明传感器可以应用于未来的工业和临床分析。

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