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Updated: May 3, 2026

A Strategy for Sensitive, Large Scale Quantitative Metabolomics
Published on: May 27, 2014
Development of an LC-MS/MS Method for Analysis of Levamisole in Poultry and Livestock Products
Ya-Chun Chou1, Pei-Jie Zheng1, Chih-Neng Huang1
1Taiwan Food and Drug Administration, Ministry of Health and Welfare, Division of Research and Analysis, No.161-2, Kunyang St, Nangang District, Taipei City 11561, Taiwan, R.O.C.
Background:
Levamisole is an imidazothiazole anthelmintic agent widely used in poultry and livestock. In Taiwan, the Ministry of Health and Welfare has established maximum residue limits (MRLs) ranging from 0.01 to 1 μg/g for eggs, milk, and various livestock and poultry tissues.
Objective:
To support regulatory monitoring, a chiral LC-MS/MS method with simple sample preparation was developed for determining levamisole residues in chicken muscle, porcine muscle, liver, kidney, fat, poultry eggs, and milk from food-producing animals.
Methods:
Separation of levamisole and its enantiomer dexamisole was achieved using an Astec Cyclobond I 2000 DMP column with 100 mM ammonium acetate and acetonitrile as the mobile phase. The sample was extracted with acetonitrile-methanol (95 : 5, v/v) containing 1% formic acid, followed by cleanup with acetonitrile-saturated n-hexane.
Results:
The method demonstrated good linearity (r > 0.995, 0.5-25 ng/mL) for three quantitative methods in all tested matrixes. The method achieved a LOQ of 0.005 μg/g in all matrixes. While the pre-spiked tissue calibration curve provided higher recoveries (96.3-110.1%) by compensating for both matrix effects and analyte losses during extraction, it was more labor-intensive. In contrast, the matrix-matched calibration curve and isotopically labeled internal standard (ISTD)-normalized solvent calibration curve offered slightly lower recoveries (84.8-100.4%) but showed greater practicality for routine monitoring. All calibration strategies met the accuracy and precision criteria specified in European Commission Decision 2002/657/EC and the Taiwan Food and Drug Administration (TFDA) validation guidelines. Furthermore, levamisole residues were not detected in any of the 10 commercial livestock and poultry products analyzed, confirming the applicability of the method for food surveillance.
Conclusion:
A simple and rapid LC-MS/MS method was developed for the determination of levamisole in poultry and livestock matrixes, demonstrating satisfactory sensitivity, accuracy, and selectivity. The method is suitable for routine monitoring and large-scale surveillance of levamisole residues in food products.
Highlights:
Development and validation of an LC-MS/MS method involving simple solvent extraction for chiral determination of levamisole in livestock and poultry products with satisfactory sensitivity, accuracy, and selectivity.
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