首页> 外文期刊>Journal of Agricultural and Food Chemistry >Analysis of matrix-bound nitrofuran residues in worldwide-originated honeys by isotope dilution high-performance liquid chromatography-tandem mass spectrometry.
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Analysis of matrix-bound nitrofuran residues in worldwide-originated honeys by isotope dilution high-performance liquid chromatography-tandem mass spectrometry.

机译:同位素稀释高效液相色谱-串联质谱法分析全球起源的蜂蜜中与基质结合的硝基呋喃残留量。

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摘要

A sensitive and selective isotope dilution liquid chromatography-electrospray ionization tandem mass spectrometry (LC-ESIMS/MS) method is presented for the simultaneous analysis of the metabolites of four nitrofuran veterinary drugs, that is, furazolidone, furaltadone, nitrofurantoin, and nitrofurazone, in honey samples. The method entails a combined hydrolysis of protein-bound drug metabolites and derivatization of the resulting metabolites with 2-nitrobenzaldehyde (NBA) during an overnight incubation, followed by a liquid-liquid extraction and a cleanup on a polymeric solid-phase extraction cartridge. Mass spectral acquisition is carried out in the positive ion mode by applying multiple reaction monitoring (MRM) of three diagnostic transition reactions for each analyte under survey. A reliable quantification is obtained by the use of one deuterated analogue per analyte (NBA-d(4) derivative). The method has been validated in honey according to the European Union criteria for the analysis of veterinarydrug residues in food. Expressed in underivatized nitrofuran metabolite concentrations, the decision limits (CCalpha) ranged within 0.07-0.46 microg/kg, and the detection capabilities (CCbeta) were within 0.12-0.56 microg/kg. The method has been successfully applied in a survey of honeys of various geographical origins, showing that furazolidone is the main nitrofuran antibiotic administered to treat bacterial diseases of bees.
机译:提出了一种灵敏,选择性的同位素稀释液相色谱-电喷雾串联质谱法(LC-ESIMS / MS),用于同时分析四种硝基呋喃兽药的呋喃唑酮,呋喃他酮,硝基呋喃妥因和硝基呋喃酮的代谢产物。蜂蜜样品。该方法需要将蛋白结合的药物代谢产物水解,并在过夜温育过程中用2-硝基苯甲醛(NBA)将所得代谢产物衍生化,然后进行液-液萃取并在聚合物固相萃取柱上进行净化。通过对每个被调查分析物进行三个诊断过渡反应的多反应监测(MRM),以阳离子模式进行质谱采集。通过对每种分析物使用一种氘代类似物(NBA-d(4)衍生物)获得可靠的定量。该方法已根据欧洲联盟标准在蜂蜜中验证,用于分析食品中的兽药残留。以未衍生的硝基呋喃代谢物浓度表示,决策极限(CCalpha)在0.07-0.46 microg / kg之内,检测能力(CCbeta)在0.12-0.56 microg / kg之内。该方法已成功用于各种地理来源的蜂蜜调查中,表明呋喃唑酮是用于治疗蜜蜂细菌性疾病的主要硝基呋喃抗生素。

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