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用于贝类中海藻毒素检测的电化学免疫分析的免疫识别磁性支持物的开发。

Immunorecognition magnetic supports for the development of an electrochemical immunoassay for azaspiracid detection in mussels.

机构信息

IRTA, Ctra. Poble Nou, km. 5.5, 43540 Sant Carles de la Ràpita, Spain.

Norwegian Veterinary Institute, P.O. Box 750 Sentrum, N-0106 Oslo, Norway.

出版信息

Biosens Bioelectron. 2017 Jun 15;92:200-206. doi: 10.1016/j.bios.2017.02.015. Epub 2017 Feb 10.

Abstract

As azaspiracids (AZAs) are being reported from the coastal waters of an increasing number of countries on a global scale, the need for rapid, simple and cost-effective methods to detect these marine toxins and protect seafood consumers' health is becoming evident. A magnetic bead (MB)-based direct immunoassay for the detection of AZAs, using protein G-coated MBs as supports for antibody immobilisation and peroxidase-labelled AZA as a tracer is detailed. A colorimetric approach was first developed to optimise the experimental parameters and establish the cross-reactivity factors for AZA-1-10. The subsequent combination of the immunorecognition MBs with 8-electrode arrays enabled the multiplexed electrochemical detection of AZAs. Naturally-contaminated mussel samples were analysed and the results obtained showed an excellent correlation with LC-MS/MS analysis. The MB-based immunoassay facilitated the quantification of a wide range of AZA concentrations (120-2875μg AZA-1 equiv./kg), with a limit of detection (63μg AZA-1 equiv./kg) below the European regulatory threshold, using a protocol that requires very few steps and a short analysis time (~ 15min). The simplicity, cost-effectiveness, rapidity, robustness, selectivity and precision of the assay provide a valuable tool for the detection of all regulated AZAs and other toxic AZA analogues, suitable for end users in the field of food safety.

摘要

由于在全球范围内越来越多的国家的沿海海域都有报道发现azaspiracids(AZAs),因此需要快速、简单和具有成本效益的方法来检测这些海洋毒素,以保护海鲜消费者的健康。本文详细介绍了一种基于磁性珠(MB)的直接免疫测定法,用于检测 AZAs,该方法使用蛋白 G 涂层的 MB 作为抗体固定化的支持物,而过氧化物酶标记的 AZA 则作为示踪物。首先开发了比色法来优化实验参数,并确定 AZA-1-10 的交叉反应因子。随后,将免疫识别 MB 与 8 电极阵列相结合,实现了 AZAs 的多重电化学检测。对受自然污染的贻贝样品进行了分析,结果表明与 LC-MS/MS 分析具有极好的相关性。该 MB 基于的免疫测定法可以定量检测广泛范围的 AZA 浓度(120-2875μg AZA-1 当量/kg),检测限(63μg AZA-1 当量/kg)低于欧洲监管阈值,该协议需要的步骤很少,分析时间很短(约 15min)。该测定法的简单性、成本效益、快速性、鲁棒性、选择性和精密度为检测所有受监管的 AZAs 和其他有毒 AZA 类似物提供了有价值的工具,适用于食品安全领域的终端用户。

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