首页> 外文期刊>Food additives & contaminants >Development of a liquid chromatography-tandem mass spectrometry method to determine colistin, bacitracin and virginiamycin M1 at cross-contamination levels in animal feed
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Development of a liquid chromatography-tandem mass spectrometry method to determine colistin, bacitracin and virginiamycin M1 at cross-contamination levels in animal feed

机译:液相色谱 - 串联质谱法的发展,以测定大肠杆菌,甲硝辛肽和维氏霉素M1在动物饲料中的交叉污染水平下

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摘要

Cross-contamination of animal feed with antibiotics may occur during manufacturing in feed mills, because shared production lines can be used for medicated and non-medicated feed, but may also occur during transport, storage and at the farm level. This is a major issue in the current context where antimicrobial usage must be controlled in order to maintain their effectiveness. A LC-MS/MS method was developed for the determination of colistin, bacitracin A and virginiamycin M1 in feed for pigs, poultry and rabbits at concentrations similar to those encountered in cross-contamination. After investigating various issues related to colistin behaviour and matrix effects, we successfully validated this method according to the requirements of European regulations in terms of linearity, trueness, precision, limit of quantification and limit of decision. Trueness ranged 88.6-107.8% and precision ranged 12.6-21.2%. We then applied this method to the analysis of medicated pig feed to check the performance of the method on "real" samples of medicated feed. We subsequently analysed non-medicated pig, and rabbit feed samples, collected directly on farms, to check the rate of cross-contamination. No samples were contaminated by colistin, bacitracin, or virginiamycin.
机译:在饲料厂的制造过程中可能发生抗生素的动物饲料的交叉污染,因为共用生产线可用于药物和非药物饲料,但也可能在运输,储存和农场水平期间发生。这是当前背景下的主要问题,其中必须控制抗微生物使用,以保持其有效性。开发了LC-MS / MS方法,用于测定猪,家禽和兔子饲料中的Colistin,Bacitracin A和Virginiamycin M1,其浓度类似于在交叉污染中遇到的浓度。在调查与Colistin行为和矩阵效应相关的各种问题后,我们根据欧洲法规的要求,在线性,真实,精度,量化限制和决定限制的要求成功地验证了这种方法。特鲁特范围不断增长88.6-107.8%和精度等级为12.6-21.2%。然后,我们将这种方法应用于药物猪进料的分析,检查药物饲料“真实”样品上的方法。我们随后分析了直接在农场上收集的非药物猪和兔子饲料样品,以检查交叉污染的速度。没有样品被Colistin,Bacitracin或Virginiamcin污染。

著录项

  • 来源
    《Food additives & contaminants》 |2021年第9期|1481-1494|共14页
  • 作者单位

    Residues and Contaminants Analysis Unit Fougeres Laboratory ANSES (French National Agency for Food Environment and Occupational Health & Safety) Fougeres Cedex France;

    Residues and Contaminants Analysis Unit Fougeres Laboratory ANSES (French National Agency for Food Environment and Occupational Health & Safety) Fougeres Cedex France;

    LCM CNRS Ecole Polytechnique Institut de Polytechnique de Paris Palaiseau France;

    National Reference Laboratory for Veterinary Drug Residues in Food Fougeres Laboratory ANSES (French National Agency for Food Environment and Occupational Health & Safety) Fougeres Cedex France EU Reference Laboratory for Antimicrobial and Dye Residues in Food Fougeres Laboratory ANSES (French National Agency for Food Environment and Occupational Health & Safety) Fougeres Cedex France;

    Residues and Contaminants Analysis Unit Fougeres Laboratory ANSES (French National Agency for Food Environment and Occupational Health & Safety) Fougeres Cedex France;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Feed; polypeptide antibiotics; virginiamycin; liquid chromatography-tandem mass spectrometry; cross-contamination;

    机译:喂养;多肽抗生素;弗吉尼亚霉素;液相色谱 - 串联质谱;交叉感染;

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