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霉菌毒素分析进展及其质量保证。

Advances in the analysis of mycotoxins and its quality assurance.

作者信息

Krska Rudolf, Welzig Elvira, Berthiller F, Molinelli A, Mizaikoff B

机构信息

Institute for Agrobiotechnology (IFA-Tulln), Christian Doppler Laboratory for Mycotoxin Research, Konrad Lorenz Strasse 20, A-3430 Tulln, Austria.

出版信息

Food Addit Contam. 2005 Apr;22(4):345-53. doi: 10.1080/02652030500070192.

Abstract

This article covers the latest activities in mycotoxin analysis and the advances of its respective quality assurance. The majority of mycotoxin analyses carried out in the laboratories is still based on physicochemical methods, which are continually improved. For example, immunoaffinity columns and multifunctional clean-up columns have become of increasing importance and in some areas of mycotoxin analysis they have more or less displaced conventional liquid-liquid partitioning or column chromatography during clean-up. The need for rapid yes/no decisions on the other hand has led to a number of new screening methods. In particular, rapid and easy-to-use test kits based on immunoanalytical principles or the generation of artificial macromolecular receptors employed in molecularly imprinted polymers (MIPs) have made good progress. Further research in mycotoxin analysis is pursued in the field of biosensors and also the potential of infrared spectroscopic techniques as screening method has been demonstrated. In the area of multi mycotoxin analysis the most promising development was observed in mass spectrometry. At the same time, several interlaboratory studies in the field of mycotoxin analysis revealed problems proven by high between laboratory standard deviation and non-traceable results. This not only shows the necessity of reliable methods and well defined performance characteristics but also the need for appropriate calibrants of defined concentration and stated purity. A certified zearalenone (ZON) calibrant is already available and a certified calibrant containing various trichothecenes is currently under development. (Certified) reference materials are available for aflatoxins in a number of commodities, ochratoxin A (OTA) in wheat, deoxynivalenol (DON) in maize and wheat, and ZON in maize. With these measures important steps towards traceability of results in mycotoxin analysis have been achieved.

摘要

本文涵盖了霉菌毒素分析的最新活动及其相应质量保证的进展。实验室中进行的大多数霉菌毒素分析仍基于物理化学方法,这些方法在不断改进。例如,免疫亲和柱和多功能净化柱变得越来越重要,在霉菌毒素分析的某些领域,它们在净化过程中或多或少已取代了传统的液-液分配或柱色谱法。另一方面,对快速做出是/否决策的需求催生了一些新的筛选方法。特别是,基于免疫分析原理或分子印迹聚合物(MIPs)中使用的人工大分子受体生成的快速且易于使用的检测试剂盒取得了良好进展。在生物传感器领域也在进行霉菌毒素分析的进一步研究,并且红外光谱技术作为筛选方法的潜力也已得到证明。在多霉菌毒素分析领域,质谱分析取得了最有前景的进展。同时,霉菌毒素分析领域的几项实验室间研究揭示了实验室标准偏差高和结果不可溯源所证明的问题。这不仅表明了可靠方法和明确性能特征的必要性,还表明了对具有确定浓度和规定纯度的适当校准物的需求。一种经过认证的玉米赤霉烯酮(ZON)校准物已经可用,一种包含多种单端孢霉烯族毒素的经过认证的校准物目前正在开发中。(经过认证的)参考物质可用于多种商品中的黄曲霉毒素、小麦中的赭曲霉毒素A(OTA)、玉米和小麦中的脱氧雪腐镰刀菌烯醇(DON)以及玉米中的ZON。通过这些措施,在霉菌毒素分析结果的可追溯性方面已经迈出了重要步伐。

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