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用于玉米样品中黄曲霉毒素B1测定的免疫亲和柱净化与液相色谱法:实验室间研究

Immunoaffinity column cleanup with liquid chromatography for determination of aflatoxin B1 in corn samples: interlaboratory study.

作者信息

Brera Carlo, Debegnach Francesca, Minardi Valentina, Pannunzi Elena, De Santis Barbara, Miraglia Marina

机构信息

Italian National Institute for Health (ISS), National Center for Food Quality and Risk Assessment, GMO and Mycotoxins Unit, Viale Regina Elena, 299-00161 Rome, Italy.

出版信息

J AOAC Int. 2007 May-Jun;90(3):765-72.

Abstract

An interlaboratory study was conducted to evaluate the effectiveness of an immunoaffinity column cleanup liquid chromatography (LC) method for the determination of aflatoxin B1 levels in corn samples, enforced by European Union legislation. A test portion was extracted with methanol-water (80 + 20); the extract was filtered, diluted with phosphate-buffered saline solution, filtered on a microfiber glass filter, and applied to an immunoaffinity column. The column was washed with deionized water to remove interfering compounds, and the purified aflatoxin B1 was eluted with methanol. Aflatoxin B1 was separated and determined by reversed-phase LC with fluorescence detection after either pre- or postcolumn derivatization. Precolumn derivatization was achieved by generating the trifluoroacetic acid derivative, used by 8 laboratories. The postcolumn derivatization was achieved either with pyridinium hydrobromide perbromide, used by 16 laboratories, or with an electrochemical cell by the addition of bromide to the mobile phase, used by 5 laboratories. The derivatization techniques used were not significantly different when compared by the Student's t-test; the method was statistically evaluated for all the laboratories. Five corn sample materials, both spiked and naturally contaminated, were sent to 29 laboratories (22 Italian and 7 European). Test portions were spiked with aflatoxin B1 at levels of 2.00 and 5.00 ng/g. The mean values for recovery were 82% for the low level and 84% for the high contamination level. Based on results for spiked samples (blind pairs at 2 levels) as well as naturally contaminated samples (blind pairs at 3 levels), the values for relative standard deviation for repeatability (RSDr) ranged from 9.9 to 28.7%. The values for relative standard deviation for reproducibility (RSDR) ranged from 18.6 to 36.8%. The method demonstrated acceptable within- and between-laboratory precision for this matrix, as evidenced by the HorRat values.

摘要

开展了一项实验室间研究,以评估免疫亲和柱净化液相色谱(LC)法测定玉米样品中黄曲霉毒素B1含量的有效性,该方法是欧盟法规强制要求使用的。取一份试验份用甲醇 - 水(80 + 20)提取;提取物过滤后,用磷酸盐缓冲盐溶液稀释,通过微纤维玻璃过滤器过滤,然后加至免疫亲和柱上。用去离子水冲洗柱子以去除干扰化合物,用甲醇洗脱纯化后的黄曲霉毒素B1。黄曲霉毒素B1通过柱前或柱后衍生化后的反相液相色谱和荧光检测进行分离和测定。8个实验室采用生成三氟乙酸衍生物的方法进行柱前衍生化。16个实验室采用氢溴酸高溴吡啶进行柱后衍生化,5个实验室通过向流动相中添加溴化物并使用电化学池进行柱后衍生化。通过学生t检验比较时,所使用的衍生化技术没有显著差异;对所有实验室的该方法进行了统计学评估。将5种加标和天然污染的玉米样品材料送至29个实验室(22个意大利实验室和7个欧洲实验室)。试验份中黄曲霉毒素B1的加标水平为2.00和5.00 ng/g。低水平加标的回收率平均值为82%,高污染水平的回收率平均值为84%。基于加标样品(2个水平的盲样对)以及天然污染样品(3个水平的盲样对)的结果,重复性相对标准偏差(RSDr)值范围为9.9%至28.7%。再现性相对标准偏差(RSDR)值范围为18.6%至36.8%。如HorRat值所示,该方法在该基质中显示出可接受的实验室内部和实验室间精密度。

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