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通过液相色谱-大气压电离质谱法对复杂生物和食品基质中的痕量霉菌毒素进行分析。

Trace mycotoxin analysis in complex biological and food matrices by liquid chromatography-atmospheric pressure ionisation mass spectrometry.

作者信息

Zöllner Peter, Mayer-Helm Bernhard

机构信息

Bayercropscience GmbH, Product Technology, Industriepark Höchst, G836, D-65926 Frankfurt/Main, Germany.

出版信息

J Chromatogr A. 2006 Dec 15;1136(2):123-69. doi: 10.1016/j.chroma.2006.09.055. Epub 2006 Nov 7.

DOI:10.1016/j.chroma.2006.09.055
PMID:17087969
Abstract

Mycotoxins are toxic secondary metabolites produced by filamentous fungi that are growing on agricultural commodities. Their frequent presence in food and their severe toxic, carcinogenic and estrogenic properties have been recognised as potential threat to human health. A reliable risk assessment of mycotoxin contamination for humans and animals relies basically on their unambiguous identification and accurate quantification in food and feedstuff. While most screening methods for mycotoxins are based on immunoassays, unambiguous analyte confirmation can be easily achieved with mass spectrometric methods, like gas chromatography/mass spectrometry (GC/MS) or liquid chromatography/mass spectrometry (LC/MS). Due to the introduction of atmospheric pressure ionisation (API) techniques in the late 80s, LC/MS has become a routine technique also in food analysis, overcoming the traditional drawbacks of GC/MS regarding volatility and thermal stability. During the last few years, this technical and instrumental progress had also an increasing impact on the expanding field of mycotoxin analysis. The aim of the present review is to give an overview on the application of LC-(API)MS in the analysis of frequently occurring and highly toxic mycotoxins, such as trichothecenes, ochratoxins, zearalenone, fumonisins, aflatoxins, enniatins, moniliformin and several other mycotoxins. This includes also the investigation of some of their metabolites and degradation products. Suitable sample pre-treatment procedures, their applicability for high sample through-put and their influence on matrix effects will be discussed. The review covers literature published until July 2006.

摘要

霉菌毒素是丝状真菌在农产品上生长产生的有毒次生代谢产物。它们频繁出现在食物中,且具有严重的毒性、致癌性和雌激素特性,已被认为是对人类健康的潜在威胁。对人类和动物霉菌毒素污染进行可靠的风险评估基本上依赖于在食品和饲料中对其进行明确鉴定和准确定量。虽然大多数霉菌毒素筛查方法基于免疫分析,但使用气相色谱/质谱联用(GC/MS)或液相色谱/质谱联用(LC/MS)等质谱方法可以轻松实现对分析物的明确确认。由于在80年代末引入了大气压电离(API)技术,LC/MS在食品分析中也已成为常规技术,克服了GC/MS在挥发性和热稳定性方面的传统缺点。在过去几年中,这一技术和仪器方面的进展对不断扩展的霉菌毒素分析领域也产生了越来越大的影响。本综述的目的是概述LC-(API)MS在分析常见且剧毒的霉菌毒素(如单端孢霉烯族毒素、赭曲霉毒素、玉米赤霉烯酮、伏马菌素、黄曲霉毒素、恩镰孢菌素、串珠镰刀菌素及其他几种霉菌毒素)中的应用。这还包括对它们的一些代谢物和降解产物的研究。将讨论合适的样品预处理程序、它们对高样品通量的适用性及其对基质效应的影响。本综述涵盖截至2006年7月发表的文献。

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