赵东豪, 黎智广, 王旭峰, 王强, 李永贤, 黄珂, 李刘冬. 高效液相色谱-串联质谱法检测水产品中硝基呋喃类代谢物的优化研究[J]. 南方水产科学, 2015, 11(6): 58-64. DOI: 10.3969/j.issn.2095-0780.2015.06.008
引用本文: 赵东豪, 黎智广, 王旭峰, 王强, 李永贤, 黄珂, 李刘冬. 高效液相色谱-串联质谱法检测水产品中硝基呋喃类代谢物的优化研究[J]. 南方水产科学, 2015, 11(6): 58-64. DOI: 10.3969/j.issn.2095-0780.2015.06.008
ZHAO Donghao, LI Zhiguang, WANG Xufeng, WANG Qiang, LI Yongxian, HUANG Ke, LI Liudong. Optimization of determination of nitrofuran metabolites in aquatic products by liquid chromatography tandem mass spectrometry[J]. South China Fisheries Science, 2015, 11(6): 58-64. DOI: 10.3969/j.issn.2095-0780.2015.06.008
Citation: ZHAO Donghao, LI Zhiguang, WANG Xufeng, WANG Qiang, LI Yongxian, HUANG Ke, LI Liudong. Optimization of determination of nitrofuran metabolites in aquatic products by liquid chromatography tandem mass spectrometry[J]. South China Fisheries Science, 2015, 11(6): 58-64. DOI: 10.3969/j.issn.2095-0780.2015.06.008

高效液相色谱-串联质谱法检测水产品中硝基呋喃类代谢物的优化研究

Optimization of determination of nitrofuran metabolites in aquatic products by liquid chromatography tandem mass spectrometry

  • 摘要: 研究了利用高效液相色谱-串联质谱法(LC-MS/MS)检测水产品中残留的5-吗啉甲基-3-氨基-2-噁唑烷基酮(AMOZ),氨基脲(SEM)、1-氨基-2-内酰脲(AHD)和3-氨基-2-噁唑烷基酮(AOZ)等4种硝基呋喃类代谢物,优化了前处理方法及液相色谱条件。硝基呋喃类代谢物经衍生化后,调节样品pH至7.0~7.5,加入8 mL乙酸乙酯,离心并转移上清液,氮气吹干后,用乙腈-0.1%的甲酸水(5/95,V/V)溶液定容,4 ℃高速离心后上机测定。采用梯度洗脱法,4种代谢物在C18柱中分离良好。该法有效地提高硝基呋喃类代谢物的检测效率,且检测结果准确,适用于批量水产品的检测。

     

    Abstract: The nitrofuran metabolites (AMOZ, SEM, AHD and AOZ) were determined by liquid chromatography tandem mass spectrometry (LC-MS/MS) in aquatic products. The sample pretreatment method and chromatographic conditions were optimized. The sample pH value was adjusted to 7.0~7.5 after derivation. Then the analytes were extracted by 8 mL ethyl acetate. Following centrifugation, the supernatant was transferred and evaporated to dryness under a gentle stream of nitrogen at 40 ℃. The residues were redissolved in 1 mL mobile phase of acetonitrile and 0.1% formic acid (5/95, V/V), and then centrifuged at 20 000g for 10 min at 4 ℃. Gradient elution for LC separation was performed by using acetonitrile and 0.1% formic acid in water solution, and four nitrofuran metabolites were excellently separated with a C18 column. This accurate optimized method can promote efficiency greatly andis suitable for lot determination of nitrofuran metabolites in aquatic products.

     

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