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首页> 外文期刊>Environmental Science and Pollution Research >Occurrence and human dietary assessment of sulfonamide antibiotics in cultured fish around Tai Lake, China
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Occurrence and human dietary assessment of sulfonamide antibiotics in cultured fish around Tai Lake, China

机译:大泰湖养殖鱼类硫胺抗生素的发生和人饮食评估

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摘要

As the most important fishery medicines, sulfonamides are widely used to prevent diseases caused by pathogens in aquaculture. However, relatively little is known about the residues and dietary risks associated with cultured fish around Tai Lake. In the present study, a sampling strategy for a complete aquaculture period was conducted. Specifically, 12 selected sulfonamide antibiotics were measured among 116 fish samples recruited from four sampling periods, four species, four areas, and 18 fish ponds. All 12 antibiotics were detected at detection frequencies of 4.31-28.45%. Total sulfonamides were detected in 77.59% of the fish samples, with 57.76% of fish samples containing from 0.1 to 10 mu g kg(-1). Sulfadiazine (SDZ), sulfamethoxazole (SMZ), sulfamethazine (SDD), and sulfamonomethoxine (SMM) were the main types of antibiotics used, and these were present at high concentrations (> 100 mu g kg(-1)) with high occurrences, especially in the middle of the aquaculture season. Dietary assessment showed that residual antibiotics in all fish that were being sent to market were far below the maximum residue limit (MRL) of total sulfonamides and that there was almost no risk associated with fish consumption. The results of the present study will facilitate development of effective measures to produce safe aquatic products and meaningful suggestions for consuming aquatic products.
机译:作为最重要的渔业药物,磺胺酰胺被广泛用于预防水产养殖病原体引起的疾病。然而,关于与大湖周围的养殖鱼类相关的残留物和饮食风险相对较少。在本研究中,进行了完整水产养殖期的抽样策略。具体地,在从四个采样期,四种物种,四个区域和18个鱼塘中招募的116个鱼样品中测量了12种选定的磺酰胺抗生素。在检测频率为4.31-28.45%的检测频率下检测所有12种抗生素。在77.59%的鱼类样品中检测到总磺酰胺,57.76%的鱼样品含有0.1至10μgkg(-1)。磺胺嗪(SDZ),磺胺甲唑(SMZ),磺胺甲嘧啶(SDD)和磺胺甲氧胺(SMM)是所用的主要类型的抗生素,并且这些是高浓度(>100μgkg(-1)),具有高次数,特别是在水产养殖季节中间。饮食评估表明,送到市场的所有鱼类的残留抗生素远远低于总磺胺酰胺的最大残留极限(MRL),并且几乎没有与鱼类消费相关的风险。本研究的结果将促进开发有效措施,为消费水产品产生安全的水产品和有意义的建议。

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