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谷物中同时测定福美双和膦酸的液相色谱-串联质谱法的单实验室和多实验室验证以及水稻、小麦和大麦分析

Single- and Multiple-Laboratory Validation of LC-MS/MS Method for Simultaneous Determination of Fosetyl-Al and Phosphonic Acid in Cereal Grains and Analysis of Rice, Wheat, and Barley.

作者信息

Sekiyama Atsushi, Toriumi Eisuke, Yamada Yukiko

机构信息

Ministry of Agriculture, Forestry and Fisheries, 1-2-1 Kasumigaseki, Chiyoda-ku, Tokyo, 100-8950, Japan.

Japan Food Research Laboratories, 7-4-41 Saitoasagi, Ibaraki, Osaka, 567-0085, Japan.

出版信息

J AOAC Int. 2021 Sep 27;104(5):1298-1307. doi: 10.1093/jaoacint/qsab063.

Abstract

BACKGROUND

In Japan, the residue definition for fosetyl-Al is "sum of fosetyl-Al and phosphonic acid expressed as fosetyl-Al" and its current provisional maximum residue limit (MRL) in cereals is under review.

OBJECTIVE

For establishment and enforcement of fosetyl-Al MRL in cereals, a new analytical method for fosetyl-Al and phosphonic acid in cereals should be developed and validated.

METHOD

The new method involves water extraction, cleanup using tandem cation- and anion-exchange mini columns, and determination by LC-MS/MS. It was validated in a single laboratory and multiple laboratories. Using the method, 41 samples of rice, wheat, and barley were analyzed.

RESULTS

In the multiple-laboratory validation: repeatability and reproducibility for three concentrations of fosetyl-Al and phosphonic acid were in ranges of 4.8-20 and 5.9-34%; calculated sum of fosetyl-Al and phosphonic acid, expressed as fosetyl-Al, showed good recoveries; linearity was observed for fosetyl-Al and phosphonic acid in ranges of 0.005-0.4 and 0.025-2.0 mg/kg; and specificity was sufficient. The method was verified for rice matrixes. In 41 samples, phosphonic acid was detected up to 0.2 mg/kg while fosetyl was not.

CONCLUSIONS

The method was successfully validated with high precision, accuracy, linearity, and specificity and capable of analyzing fosetyl-Al and phosphonic acid with a practical LOQ of 0.01 and 0.05 mg/kg. The LOQs and concentrations of phosphonic acid in samples indicate that a potential MRL would be 0.5 mg/kg for fosetyl-Al in cereals.

HIGHLIGHTS

The validated method was simpler than many methods and did not require derivatization, matrix-matched orisotopically-labeled internal standards.

摘要

背景

在日本,乙膦铝的残留定义为“乙膦铝和以乙膦铝表示的膦酸之和”,其目前在谷物中的暂定最大残留限量(MRL)正在审查中。

目的

为了确立并实施谷物中乙膦铝的MRL,应开发并验证一种测定谷物中乙膦铝和膦酸的新分析方法。

方法

新方法包括用水提取,使用串联阳离子和阴离子交换微型柱净化,以及通过液相色谱-串联质谱法(LC-MS/MS)进行测定。该方法在单个实验室和多个实验室中进行了验证。使用该方法分析了41份大米、小麦和大麦样品。

结果

在多实验室验证中:三种浓度的乙膦铝和膦酸的重复性和再现性分别在4.8 - 20%和5.9 - 34%范围内;以乙膦铝表示的乙膦铝和膦酸的计算总和显示出良好的回收率;乙膦铝和膦酸在0.005 - 0.4和0.025 - 2.0 mg/kg范围内呈线性;特异性充足。该方法在大米基质中得到了验证。在41个样品中,检测到膦酸含量高达0.2 mg/kg,而未检测到乙膦。

结论

该方法成功地通过高精度、准确性、线性和特异性进行了验证,能够以0.01和0.05 mg/kg的实际定量限分析乙膦铝和膦酸。样品中膦酸的定量限和浓度表明,谷物中乙膦铝的潜在MRL可能为0.5 mg/kg。

要点

经验证的方法比许多方法更简单,不需要衍生化、基质匹配或同位素标记的内标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/beaf/8475089/57650189f9b9/qsab063f1.jpg

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