鱼类恩诺沙星药残消除研究进展
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S 948

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福建省自然科学基金(2020J01670); 鳗鲡现代产业技术教育部工程研究中心开放基金(RE202207);“十四五”国家特色淡水鱼产业技术体系专项(CARS-46)


Research progress on elimination of enrofloxacin residues in fish
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Fujian Provincial Natural Science Foundation of China(2020J01670), the Fund of Engineering Research Center of the Modern Technology for Eel Industry, Ministry of Education, and the China Agriculture Research System of Ministry of Finance and Ministry of Agriculture and Rural Areas (CARS-46)

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    摘要:

    恩诺沙星 (ENR)是一种吸收分布快、血药浓度高、药效持久和生物利用度高的抗菌素,在鱼类疾病防治中广泛应用。然而,近年来,鱼类与养殖环境ENR药残事件对人类与生态的安全影响,已成为公众日益关注的焦点。本文旨在归纳鱼类ENR消除研究的基础上,从ENR自身结构与性质,ENR与鱼类种类、发育阶段、组织差异、生理与病理状况、给药剂量与给药方式,以及温度、盐度、光照等环境因子关系,对鱼类ENR药残成因进行追溯分析。首次发现并提出底栖鱼类较其他水层鱼类易于形成ENR药残蓄积的假说,其可能与沉积环境有机质丰富,易于吸附ENR,底层黑暗环境无法光解ENR,底层鱼类从沉积环境吸收、富集ENR有关,建议对底层鱼类ENR休药期重新研究界定,对其ENR药残机制进行着重研究。首次提出基于选择突变窗理论的ENR大剂量给药模式,是引发当前鱼类与环境ENR药残的主要根源。据此,提出基于ENR最小抑菌浓度的ENR减量给药方案,联合具有抗菌和促解毒功能的传统中草药饲料添加剂,以达到ENR减量增效,降低ENR耐药性,促进ENR药残从养殖鱼体消除,缩短鱼类ENR休药期,降低养殖环境ENR药残的目的。同时,为减少鱼类ENR的环境来源,应结合环境ENR消除技术开展相关研究。本文可为养殖鱼类ENR科学用药与药残风险控制提供研究思路。

    Abstract:

    Enrofloxacin (ENR) is an antibiotic with rapid absorption and distribution, high blood concentration, long-term efficacy and high bioavailability, which has been widely used in preventing and treating of fish diseases. However, in recent years, the impact of ENR residues is a growing public concern on human and ecological safety. On the basis of studies on ENR elimination in fish, the structure and properties of ENR, the relationship between ENR and fish species, developmental stages, tissue differences, physiological and pathological conditions, dosages and modes of administration and environmental factors such as temperature, salinity, light, were reviewed, and the cause of formation of ENR residues in fish was analyzed retrospectively in this paper. For the first time, the hypothesis was firstly found and proposed that benthic fishes were more likely to form ENR residues than other water layer fishes, which probably was related to the ENR absorption by the organic matter in the sediment, and the photolysis of ENR could not be achieved in the dark sediment environment. It is suggested that the withdrawal period of ENR in bottom fishes should be redefined, and the mechanism of ENR residue in benthic fishes should be emphatically studied. It is proposed for the first time that the high dose ENR administration based on the selective mutation window theory is the main source of ENR residues in fish and environment.Therefore, in order to reduce ENR residue in cultured fish and environment, a reduction ENR dosing regimen was proposed on the basis of minimum inhibitory concentration of ENR, combining traditional Chinese herbal medicines with antibacterial and detoxification functions, to promote the elimination of ENR residues in fish, shorten the withdrawal period of ENR in fish, and reduce the risk of ENR resisting bacteria. At the same time, in order to reduce the environmental source of fish ENR, environmental ENR elimination techniques should be studied at the same time. This paper can provide new ideas for the scientific regimen of ENR and the risk control of ENR residues in cultured fish and environment.

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席峰,颜立立,潘春霖,翟少伟.鱼类恩诺沙星药残消除研究进展[J].水产学报,2023,47(10):109419

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  • 收稿日期:2023-02-13
  • 最后修改日期:2023-04-17
  • 录用日期:2023-05-07
  • 在线发布日期: 2023-10-26
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