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首页> 外文期刊>ScientificWorldJournal >The Determination of Six Ionophore Coccidiostats in Feed by Liquid Chromatography with Postcolumn Derivatisation and Spectrofotometric/Fluorescence Detection
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The Determination of Six Ionophore Coccidiostats in Feed by Liquid Chromatography with Postcolumn Derivatisation and Spectrofotometric/Fluorescence Detection

机译:用液相色谱法测定液相色谱饲料六种离子冰纤维棒,衍生化和荧光检测

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The control of levels of anticoccidial feed additives in targeted feeds plays an important role in the assurance of efficiency of animal treatment, prevention of drug resistance, and food safety. The robust and labour-efficient method for the simultaneous determination of six ionophore coccidiostats (lasalocid, maduramicin, monensin, narasin, salinomycin, and semduramicin) in targeted feed has been developed. Properly grinded and homogenized feed sample was spiked with internal standard (monesin methyl ester) and extracted with methanol. The extract was analysed with reversed phase HPLC without any further purification. The separation of the analytes with conventional C18 and core-shell columns was compared. Lasalocid was analysed with fluorescence detection, whereas other ionophores were detected with UV-Vis detector after derivatisation with vanillin in the presence of sulfuric acid. Fortified samples and targeted feeds at authorized levels were used for method validation. Recovery was in the range of 85–110%, depending on the analyte. The within-laboratory reproducibility did not exceed the target value from Horwitz equation. The results of the proficiency tests (z-scores in the range of −1.0 to 1.9) confirmed the reliability of the developed protocol.
机译:对靶向饲料中的反细胞饲料添加剂水平的控制在保证动物治疗,预防耐药性和食品安全性的保证中起着重要作用。已经开发出稳健和劳动力的方法,用于同时测定六个离子综合体(Lasalocid,Maduramicin,Monensin,Narasin,Salinomycin和Semduramicin)的靶向进料中的稳健和劳动力的方法。用内标(Munesin甲酯)掺入适当研磨和均化的进料样品,并用甲醇萃取。用反相HPLC分析提取物,无需进一步纯化。比较分析物与常规C18和核 - 壳柱的分离。用荧光检测分析升拉杆菌,而在衍生物在硫酸存在下用Vanillin衍生化后,用UV-Vis检测器检测其他离子簇。用于授权水平的强化样本和有针对性的饲料用于方法验证。恢复在85-110%的范围内,具体取决于分析物。实验室内的再现性不超过Horwitz方程的目标值。能力测试的结果(Z分数为-1.0至1.9)确认了发达方案的可靠性。

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