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Reconnaissance of 47 Antibiotics and Associated Microbial Risks in Seafood Sold in the United States

机译:侦查在美国出售的海鲜中的47种抗生素和相关的微生物风险

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摘要

Aquaculture production has nearly tripled in the last two decades, bringing with it a significant increase in the use of antibiotics. Using liquid chromatography/tandem mass spectrometry (LC-MS/MS), the presence of 47 antibiotics was investigated in U.S. purchased shrimp, salmon, catfish, trout, tilapia, and swai originating from 11 different countries. All samples (n= 27) complied with U.S. FDA regulations and five antibiotics were detected above the limits of detection: oxytetracycline (in wild shrimp, 7.7 ng/g of fresh weight; farmed tilapia, 2.7; farmed salmon, 8.6; farmed trout with spinal deformities, 3.9), 4-epioxytetracycline (farmed salmon, 4.1), sulfadimethoxine (farmed shrimp, 0.3), ormetoprim (farmed salmon, 0.5), and virginiamycin (farmed salmon marketed as antibiotic-free, 5.2). A literature review showed that sub-regulatory levels of antibiotics, as found here, can promote resistance development and publications linking aquaculture to this have increased more than 8-fold from 1991–2013. Although this study was limited in size and employed sample pooling, it represents the largest reconnaissance of antibiotics in U.S. seafood to date, providing data on previously unmonitored antibiotics and on farmed trout with spinal deformities. Results indicate low levels of antibiotic residues and general compliance with U.S. regulations. The potential for development of microbial drug resistance was identified as a key concern and research priority.
机译:在过去的二十年中,水产养殖的产量几乎增加了两倍,从而大大增加了抗生素的使用。使用液相色谱/串联质谱(LC-MS / MS),在来自11个不同国家的美国购买的虾,鲑鱼,cat鱼,鳟鱼,罗非鱼和,鱼中调查了47种抗生素的存在。所有样品(n = 27)均符合美国FDA法规,并在检测限以上检测到五种抗生素:土霉素(在野虾中,鲜重7.7 ng / g;养殖罗非鱼,2.7;养殖鲑鱼,8.6;养殖鳟鱼,脊柱畸形3.9),4-环氧四环素(养殖大马哈鱼,4.1),磺胺二甲氧嘧啶(养殖大马哈鱼,0.3),奥美普明(养殖大马哈鱼,0.5)和维吉尼亚霉素(销售无抗生素的养殖大马哈鱼,5.2)。文献综述表明,如本文所述,对抗生素的亚调节水平可以促进耐药性的发展,从1991年至2013年,与水产养殖相关的出版物增加了8倍以上。尽管这项研究的规模有限且采用了样本合并法,但它代表了迄今为止美国海鲜中最大的抗生素侦查,提供了以前未经监测的抗生素以及养殖的脊椎畸形鳟鱼的数据。结果表明抗生素残留量低并且基本符合美国法规。微生物耐药性的发展潜力已被确定为主要关注和研究重点。

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