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应用多抗体免疫亲和柱净化 LC-MS/MS 法检测动物饲料中的黄曲霉毒素、伏马菌素、脱氧雪腐镰刀菌烯醇、赭曲霉毒素 A、玉米赤霉烯酮、HT-2 毒素和 T-2 毒素

Analysis of Aflatoxins, Fumonisins, Deoxynivalenol, Ochratoxin A, Zearalenone, HT-2, and T-2 Toxins in Animal Feed by LC-MS/MS Using Cleanup with a Multi-Antibody Immunoaffinity Column.

机构信息

R-Biopharm Rhone Ltd, Block 10, Todd Campus, West of Scotland Science Park, Acre Rd, Glasgow G20 0XA, UK.

出版信息

J AOAC Int. 2022 Sep 6;105(5):1330-1340. doi: 10.1093/jaoacint/qsac035.

Abstract

BACKGROUND

Regulations limiting aflatoxin levels in animal feed and guidance values for maximum levels for fumonisins (FB1 and FB2), deoxynivalenol (DON), ochratoxin A (OTA), zearalenone (ZON), HT-2, and T-2 toxins are in place both to protect animal health and to minimize potential transfer to animal products for human consumption. A multi-mycotoxin method which can handle complex feed matrices such as distillers dried grains with solubles (DDGS) is essential for analysis and accurate quantification without the need to revert to separately analyze individual mycotoxins.

OBJECTIVE

The objective of this study is to generate single laboratory validation data for a method employing a multi-antibody immunoaffinity column (IAC) capable of providing cleanup for eleven mycotoxins, followed by LC-MS/MS quantification without the need for isotopic labelled and matrix-matched standards. The applicability of method is to be demonstrated for corn feed, pig feed, and DDGS by fortification and naturally occurring mycotoxins covering the range of regulated limits.

METHODS

Feed sample (1 kg) ground by milling to approximately 1-2 mm particle size and sub-sample (5 g) extracted with acetonitrile-water-formic acid, passing through a multi-mycotoxin IAC, washing, and eluting prior to LC-MS/MS analysis monitoring selected ion transitions.

RESULTS

Recoveries were in the range 74 to 117% (excluding five outliers) for aflatoxins, FB1, FB2, DON, OTA, ZON, HT-2, and T2- toxins spiked into three commercial animal feed matrixes (n = 84) and within-day RSDs averaged 1.7 to 10.3% (n = 99).

CONCLUSION

Single laboratory validation of a multi-antibody IAC method coupled with LC-MS/MS has shown the method to be suitable for accurate quantification of eleven regulated mycotoxins in DDGS, pig feed, and poultry feed.

HIGHLIGHTS

IAC method capable of accurately quantifying eleven regulated mycotoxins in complex feed matrices.

摘要

背景

限制动物饲料中黄曲霉毒素水平的法规和伏马菌素(FB1 和 FB2)、脱氧雪腐镰刀菌烯醇(DON)、赭曲霉毒素 A(OTA)、玉米赤霉烯酮(ZON)、HT-2 和 T-2 毒素的最大限量指导值,既可以保护动物健康,又可以最大限度地减少其向人类食用的动物产品转移的潜在风险。对于分析和准确量化,需要处理复杂的饲料基质,例如玉米酒糟(DDGS),因此需要一种多真菌毒素方法,这种方法需要使用多抗体免疫亲和柱(IAC)进行净化,而无需分别分析各个真菌毒素。

目的

本研究的目的是生成一种单实验室验证数据,该方法采用多抗体免疫亲和柱(IAC),能够提供十一种真菌毒素的净化,然后通过 LC-MS/MS 进行定量分析,而无需使用同位素标记和基质匹配标准品。该方法的适用性将通过玉米饲料、猪饲料和 DDGS 的添加和自然存在的真菌毒素来证明,这些真菌毒素涵盖了受监管限制的范围。

方法

将 1kg 饲料样品粉碎至约 1-2mm 粒径,然后取 5g 进行乙腈-水-甲酸提取,通过多真菌毒素 IAC 进行净化,然后进行清洗和洗脱,最后进行 LC-MS/MS 分析,监测选定的离子转换。

结果

在三种商业动物饲料基质(n=84)中,添加了黄曲霉毒素、FB1、FB2、DON、OTA、ZON、HT-2 和 T2-毒素,回收率在 74%至 117%范围内(不包括五个异常值),日内 RSD 平均为 1.7%至 10.3%(n=99)。

结论

单实验室验证了一种多抗体 IAC 方法与 LC-MS/MS 相结合,该方法适用于准确测定 DDGS、猪饲料和家禽饲料中十一种受监管的真菌毒素。

重点

IAC 方法能够准确测定复杂饲料基质中的十一种受监管真菌毒素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a06a/9446684/a571fe7ce2cd/qsac035f1.jpg

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