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Cardio-respiratory function and oxidative stress biomarkers in Nile tilapia exposed to the organophosphate insecticide trichlorfon (NEGUVON~®)

机译:暴露于有机磷杀虫剂敌百虫(NEGUVON〜®)的尼罗罗非鱼中的心脏呼吸功能和氧化应激生物标志物

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摘要

The cardio-respiratory function, oxidative stress and fish antioxidants were analyzed in juvenile Nile tilapia exposed for 96 h to a sublethal trichlorfon (TRC-Neguvon~Θ, Bayer) concentration of 0.5mgL~(-1). The exposure to TRC induced oxidative stress in the heart, as manifested by the glutathione S-transferase depletion and hydroperoxide elevation, and was the most sensitive organ when compared to the liver and gills, in which the antioxidant mechanisms against TRC exposure were sufficient to remove reactive oxygen species (ROS), preventing the increase of lipid peroxidation. TRC exposure also reduced O_2 uptake (VO_2) and increased the critical oxygen tension (PcO_2), reducing the species capacity to survive prolonged hypoxic conditions. The heart rate and force contraction were significantly impaired, making the heart the most sensitive organ when exposed to the TRC.
机译:在暴露于0.5mgL〜(-1)的致死性敌百虫(TRC-Neguvon〜Θ,Bayer)浓度96小时的尼罗罗非鱼幼鱼中,分析了其心脏呼吸功能,氧化应激和鱼类抗氧化剂。谷胱甘肽S-转移酶耗竭和氢过氧化物升高表明,暴露于TRC会引起心脏氧化应激,与肝脏和g相比,TRC暴露是最敏感的器官,其中抗TRC暴露的抗氧化机制足以清除肝脏和g活性氧(ROS),防止脂质过氧化作用增加。 TRC暴露还降低了O_2的吸收(VO_2)并增加了临界氧张力(PcO_2),从而降低了物种在长时间缺氧条件下生存的能力。心率和力量收缩明显受损,使心脏成为暴露于TRC时最敏感的器官。

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