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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Determinations of residual furazolidone and its metabolite, 3-amino-2-oxazolidinone (AOZ), in fish feeds by HPLC-UV and LC-MS/MS, respectively
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Determinations of residual furazolidone and its metabolite, 3-amino-2-oxazolidinone (AOZ), in fish feeds by HPLC-UV and LC-MS/MS, respectively

机译:HPLC-UV和LC-MS / MS分别测定鱼饲料中残留的呋喃唑酮及其代谢物3-氨基-2-恶唑烷酮(AOZ)

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摘要

The antibacterial drug furazolidone belonging to the group of nitrofuran antibacterial agents has been widely used as an antibacterial and antiprotozoal feed additive for poultry, cattle, and farmed fish in China. During application a large proportion of the administered drug may reach the environment directly or via feces. Although the use of furazolidone is prohibited in numerous countries, there are indications of its illegal use. It is known that furazolidone can be rapidly metabolized to 3-amino-2-oxazolidinone (AOZ) in the body of the target organism. In this study, a total of 21 fish feed samples, including 17 commercial fish feeds from local markets in China (representing 15 different formulations) and 4 fish feeds obtained from Germany and Turkey, respectively, are analyzed to determine whether the drug is still illegally used or commercially available feeds are contaminated by this drug. High-performance liquid chromatography (HPLC) and liquid chromatography-electrospray ionization tandem mass spectrometry (LC-ESI-MS/MS) methods have been implemented to determine furazolidone and its metabolite AOZ in fish feeds containing animal protein, respectively. An efficient and convenient cleanup method for the determination of furazolidone in fish feeds is developed, and a simple cleanup method for the determination of AOZ is used. Method recoveries for samples used were determined as 87.7-98.3% for furazolidone at two spike levels of 2.0 and 5.0 ng g-1 and as 95.6-102.8% for AOZ at spike levels of 0.4 and 0.8 ng g-1. Limits of detections were 0.4 ng g-1 for furazolidone and 0.05 ng g-1 for AOZ. The established methods are therefore suitable for the determination of furazolidone and its metabolite AOZ in fish feeds at trace contamination levels. Using the established methods, all fish feed samples have been proved to be furazolidone negative; however, AOZ is tested in 16 of 17 fish feeds obtained from local markets in the Hubei province of China, with a positive rate as high as 94.1%.
机译:属于硝基呋喃抗菌剂类别的抗菌药物呋喃唑酮已在中国广泛用作家禽,牛和养殖鱼类的抗菌和原生动物饲料添加剂。在施用期间,大部分施用的药物可直接或通过粪便到达环境。尽管在许多国家禁止使用呋喃唑酮,但有迹象表明其非法使用。已知呋喃唑酮可以在目标生物体内快速代谢为3-氨基-2-恶唑烷酮(AOZ)。在这项研究中,共分析了21种鱼饲料样本,其中包括17种来自中国当地市场的商业鱼饲料(代表15种不同配方)和4种从德国和土耳其获得的鱼饲料,以确定该药物是否仍然非法用过的或市售的饲料均被该药物污染。已实施高效液相色谱(HPLC)和液相色谱-电喷雾电离串联质谱(LC-ESI-MS / MS)方法来分别测定含动物蛋白的鱼饲料中的呋喃唑酮及其代谢产物AOZ。开发了一种高效便捷的鱼饲料中呋喃唑酮测定方法,并采用了一种简单的AOZ测定方法。在两个加标水平为2.0和5.0 ng g-1时,呋喃唑酮的使用方法回收率测定为87.7-98.3%,在加标为0.4和0.8 ng g-1时,AOZ为95.6-102.8%。呋喃唑酮的检出限为0.4 ng g-1,AOZ的检出限为0.05 ng g-1。因此,已建立的方法适合于痕量污染水平下鱼饲料中呋喃唑酮及其代谢物AOZ的测定。使用已建立的方法,所有鱼饲料样品均被证明为呋喃唑酮阴性。但是,在从中国湖北省本地市场采购的17种鱼饲料中,有16种对AOZ进行了测试,阳性率高达94.1%。

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