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使用液相色谱串联质谱法定量老化家禽粪便中的离子载体。

Quantification of ionophores in aged poultry litter using liquid chromatography tandem mass spectrometry.

机构信息

Department of Environmental Science and Technology, College of Agriculture and Natural Resources, University of Maryland College Park, College Park, Maryland, USA.

出版信息

J Environ Sci Health B. 2012;47(10):959-66. doi: 10.1080/03601234.2012.706564.

Abstract

Veterinary anticoccidials, biochemically known as ionophores, are widely used in poultry feed at therapeutic levels to treat Coccidiosis and at sub-therapeutic levels for growth- promotion. Commonly used ionophores in the US poultry industry are monensin, salinomycin, lasalocid and narasin. There is an increasing concern regarding the persistence of these anticoccidials in the environment. However, little attention has been directed to methods development for quantitatively measuring ionophores in complex environmental matrices such as poultry litters that are land applied. Here, we describe a rapid and sensitive liquid chromatography tandem mass spectrometry (LC-MS/MS)-based method developed for simultaneous quantification of monensin, lasalocid, salinomycin, and narasin in aged poultry litter samples. Results show significant level of monensin (97.8 ± 3.2 μg kg⁻¹), lasalocid (19.2 ± 6.6 μg kg⁻¹), salinomycin (70 ± 2.7 μg kg⁻¹) and narasin (57.3 ± 2.6 μg kg⁻¹) in poultry litter stored for over three years at < 5°C. Our findings indicate that even after several years of unmanaged storage of poultry litter, ionophores may continue to persist in this matrix, raising the possibility of prolonged release into the environment.

摘要

兽医抗球虫药,生化上称为离子载体,在治疗水平上广泛用于家禽饲料中以治疗球虫病,在亚治疗水平上用于促进生长。美国家禽业常用的离子载体有莫能菌素、盐霉素、拉沙里菌素和那拉菌素。人们越来越关注这些抗球虫药在环境中的持久性。然而,对于在禽粪等复杂环境基质中定量测量离子载体的方法开发,人们关注甚少,而禽粪是用于土地应用的。在这里,我们描述了一种快速灵敏的基于液相色谱串联质谱(LC-MS/MS)的方法,用于同时定量测定陈年禽粪样品中的莫能菌素、拉沙里菌素、盐霉素和那拉菌素。结果表明,在 < 5°C 下储存超过三年的禽粪中,莫能菌素(97.8 ± 3.2 μg kg⁻¹)、拉沙里菌素(19.2 ± 6.6 μg kg⁻¹)、盐霉素(70 ± 2.7 μg kg⁻¹)和那拉菌素(57.3 ± 2.6 μg kg⁻¹)的含量均达到显著水平。我们的研究结果表明,即使在未经管理的禽粪储存多年后,离子载体仍可能继续存在于这种基质中,从而有可能延长其向环境中的释放时间。

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