A Nanoporous Alumina Membrane Based Impedance Biosensor for Histamine Detection with Magnetic Nanoparticles Separation and Amplification

W.W. Ye , Y.T. Ding , Y. Sun , F. Tian , M. Yang
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引用次数: 6

Abstract

Seafood, especially red fish is rich in histidine, which is essential for infants and adults. With fish freshness decline or spoilage, enzyme catalysis or microorganisms cause decarbonylation of histidine to form histamine, which threatens human body by dietary and affects allergic and inflammatory reaction. Current histamine assay needs complex operation, numerous steps, and time-consuming. In this study, a functionalized nanoporous alumina membrane was used to construct a rapid and highly sensitive impedance biosensor with magnetic nanoparticles (MNPs) for target molecule pre-concentration and separation. When the functionalized MNPs accumulated histamine, they were separated by magnetism from samples and added to the anti-histamine antibody modified nanoporous alumina membrane causing blocking effect in the nanopores by immune reaction. Impedance increased as histamine concentrations increased from 1 μM to 40 mM. The limit of detection was as low as several micromolar. The biosensor provides a novel, highly sensitive and specific sensing mechanism and constructs a new technology and method for justifying seafood freshness to prevent toxic reaction in human body. It is a new approach for food quality safety control.

基于纳米孔氧化铝膜的磁性纳米颗粒分离和扩增阻抗生物传感器用于组胺检测
海鲜,尤其是红鱼富含组氨酸,这对婴儿和成人都是必需的。随着鱼类新鲜度下降或变质,酶催化或微生物使组氨酸脱碳形成组胺,通过饮食对人体构成威胁,引起过敏和炎症反应。目前的组胺测定操作复杂,步骤多,耗时长。本研究利用功能化纳米多孔氧化铝膜,构建了一种快速、高灵敏度的磁性纳米颗粒阻抗生物传感器,用于靶分子的预富集和分离。当功能化的MNPs积累组胺后,通过磁性将其从样品中分离出来,加入到抗组胺抗体修饰的纳米孔氧化铝膜中,通过免疫反应在纳米孔中产生阻断作用。阻抗随组胺浓度从1 μM增加到40 mM而增加,检出限低至几微摩尔。该传感器提供了一种新颖的、高灵敏度和特异性的传感机制,构建了一种新的判别海鲜新鲜度的技术和方法,以防止人体毒性反应。这是食品质量安全控制的新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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