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.
Mar Environ Res. 2018 Oct;141:233-246. doi: 10.1016/j.marenvres.2018.09.009. Epub 2018 Sep 11.
Oxytetracycline (OTC) is an antibiotic widely used in human and veterinary medicines. Since the primary toxicity occurs mainly at molecular/biochemical levels, the study of different biological responses corresponds to a sensitive and crucial approach. The aim of the present study was to assess the toxic effects of OTC in gilthead seabream (Sparus aurata) through the use of multibiomarkers and elucidate about the possible toxicological mechanisms involved. S. aurata were acutely (96 h: 0.04-400 μg/L) and chronically (28 days: 0.0004-4 μg/L) exposed to OTC. Detoxification, antioxidant defense, lipid peroxidation, genotoxicity, neurotransmission and energy metabolism biomarkers were evaluated. OTC impaired the detoxification pathways and caused peroxidative damage and genotoxicity. The relevance of the here-obtained data is high, since significant effects were recorded for levels already reported to occur in the wild, meaning that environmentally-exposed marine organisms (including those cultured at fish farms) are not completely exempt of risks posed by OTC.
土霉素(OTC)是一种在人类和兽医药物中广泛使用的抗生素。由于主要毒性主要发生在分子/生化水平,因此研究不同的生物学反应是一种敏感和关键的方法。本研究旨在通过使用多种生物标志物评估 OTC 在金头鲷(Sparus aurata)中的毒性作用,并阐明可能涉及的毒理学机制。使用 OTC 对金头鲷进行了急性(96 小时:0.04-400μg/L)和慢性(28 天:0.0004-4μg/L)暴露。评估了解毒、抗氧化防御、脂质过氧化、遗传毒性、神经递质和能量代谢生物标志物。OTC 破坏了解毒途径,并导致过氧化损伤和遗传毒性。这里获得的数据相关性很高,因为已经记录到在野外发生的水平会产生显著影响,这意味着暴露于环境中的海洋生物(包括在养殖场养殖的生物)并不能完全免受 OTC 带来的风险。