Multi-residue method for the confirmation of four avermectin residues in food products of animal origin by ultra-performance liquid chromatography-tandem mass spectrometry

作者:Wang Fengmei; Chen Junhui*; Cheng Hongyan; Tang Zhixu; Zhang Gang; Niu Zengyuan; Pang Shiping; Wang Xiaoru; Lee Frank Sen Chun
来源:Food Additives and Contaminants Part A-Chemistry Analysis Control Exposure& Risk Assessment, 2011, 28(5): 627-639.
DOI:10.1080/19440049.2011.563367

摘要

A confirmatory method was developed for the rapid determination of abamectin, ivermectin, doramectin and eprinomectin residues in various food products of animal origin, such as pork muscle, pork liver, fish and milk. Samples were homogenized, extracted and de-proteinized by acetonitrile, cleaned via two-step cleaning procedure using Bond Elut C18 SPE columns and then alumina-N cartridges. All the four avermectin residues in different animal-food products were simultaneously separated and determined by ultra-performance liquid chromatography-electrospray ionization tandem mass spectrometry (UPLC-ESI-MS/MS) within 3.5 min. Data acquisition under positive ESI-MS/MS was performed by applying multiple reaction monitoring (MRM) for both identification and quantification, and mass spectrometric conditions were optimized to increase selectivity and sensitivity. The matrix-matched calibration curves for different matrices, such as pork muscle, pork liver, fish and milk, were constructed and the interference effect of different sample matrices on the ionization was effectively eliminated. The UPLC-MS/MS method was validated with satisfactory linearity, recovery, precision and stability. Matrix-matched calibration curves of abamectin, ivermectin, doramectin and eprinomectin in four different matrices were linear (r2 epsilon 0.990, goodness-of-fit coefficients 12.8%) in the range 2.5-200 mu g kg-1. The limits of detection and quantification for the four avermectins were in the range 0.05-0.68 and 0.17-2.27 mu g kg-1, respectively. Recoveries were 62.4-104.5% with good intra- and inter-day precision. The method was rapid, sensitive and reliable, and can be applied to the quantitative analysis of avermectin residues in different animal-food products.

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