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土霉素对虹鳟鱼解毒、神经传递和能量产生特定生化途径的影响。

Oxytetracycline effects in specific biochemical pathways of detoxification, neurotransmission and energy production in Oncorhynchus mykiss.

机构信息

Departamento de Biologia da Faculdade de Ciências da Universidade do Porto (FCUP), Rua do Campo Alegre s/n, 4169-007 Porto, Portugal; Centro Interdisciplinar de Investigação Marinha e Ambiental (CIIMAR/CIMAR), Terminal de Cruzeiros do Porto de Leixões, Avenida General Norton de Matos S/N, 4450-208 Matosinhos, Portugal.

Centro Interdisciplinar de Investigação Marinha e Ambiental (CIIMAR/CIMAR), Terminal de Cruzeiros do Porto de Leixões, Avenida General Norton de Matos S/N, 4450-208 Matosinhos, Portugal; Faculdade de Ciências da Saúde da Universidade Fernando Pessoa (FCS-UFP), Rua Carlos da Maia, 296, 4200-150 Porto, Portugal.

出版信息

Ecotoxicol Environ Saf. 2018 Nov 30;164:100-108. doi: 10.1016/j.ecoenv.2018.07.124. Epub 2018 Aug 8.

Abstract

Oxytetracycline (OTC) is a tetracycline antibiotic, widely used in human and veterinary medicines, including in aquaculture. Given this use, OTC has been detected in different aquatic environments. Some recent works have demonstrated unintentional biological activity of OTC in non-target aquatic organisms. This study investigated the acute and chronic effects of OTC on the physiology of the fish species Oncorhynchus mykiss (rainbow trout), namely through the quantification of the activity of enzymes involved in different biochemical pathways, such as detoxification (phase II - glutathione S-transferases - GSTs, uridine-diphosphate-glucuronosyltransferases - UGTs), neurotransmission (acetylcholinesterase - AChE) and energy production (lactate dehydrogenase - LDH). The here-obtained data demonstrated the induction of GSTs activity in gills, and inhibition of AChE activity in eyes tissue, in chronically exposed organisms, as well as alterations in LDH activity following both exposures. Considering this set of results, we can infer that OTC exposure may have induced the glutathione pathway of detoxification in gills with the involvement of GSTs, or indirectly due to the metabolites that may have been produced. In turn, these metabolites may have interfered with the mechanism of neurotransmission, also causing physiological and biochemical disturbances in rainbow trout after OTC exposure, namely disturbances in energetic metabolism. In addition, it is important to stress that such occurrences took place at low, environmentally realistic levels of OTC, suggesting that organisms exposed in the wild may be putative targets of toxic effects by commonly used drugs such as antibiotics.

摘要

土霉素(OTC)是一种四环素类抗生素,广泛应用于人类和兽医医学,包括水产养殖。鉴于这种用途,OTC 已在不同的水生环境中被检测到。一些最近的研究表明,OTC 在非靶标水生生物中具有意外的生物活性。本研究调查了 OTC 对虹鳟鱼(Oncorhynchus mykiss)生理的急性和慢性影响,方法是定量测定参与不同生化途径的酶的活性,如解毒(II 期-谷胱甘肽 S-转移酶-GSTs、尿苷二磷酸葡萄糖醛酸转移酶-UGTs)、神经传递(乙酰胆碱酯酶-AChE)和能量产生(乳酸脱氢酶-LDH)。这里获得的数据表明,在慢性暴露的生物体中,GSTs 在鳃中的活性被诱导,而 AChE 在眼睛组织中的活性被抑制,以及在两种暴露后 LDH 活性的改变。考虑到这组结果,我们可以推断,OTC 暴露可能通过 GSTs 诱导了鳃中的谷胱甘肽解毒途径,或者间接由于可能产生的代谢物。反过来,这些代谢物可能干扰了神经传递机制,也导致了 OTC 暴露后虹鳟鱼的生理和生化紊乱,即能量代谢紊乱。此外,值得强调的是,这些情况发生在低浓度、环境现实的 OTC 水平下,这表明在野外暴露的生物体可能是常用药物(如抗生素)的毒性作用的潜在靶标。

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