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DISSOLVED COPPER TRIGGERS CELL DEATH IN THE PERIPHERAL MECHANOSENSORY SYSTEM OF LARVAL FISH

机译:幼鱼周缘机械感测系统中溶解铜触发的细胞死亡

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摘要

Dissolved copper is an increasingly common non-point source contaminant in urban and urbanizing watersheds. In the present study, we investigated the sublethal effects of dissolved copper on the peripheral mechanosensory system, or lateral line, of larval zebrafish (Danio rerio). Zebrafish larvae were exposed to copper (0-65 μg/L), and the cytotoxic responses of individual lateral line receptor neurons were examined using a combination of in vivo fluorescence imaging, confocal microscopy, scanning electron microscopy, and conventional histology. Dissolved copper triggered a dose-dependent loss of neurons in identified lateral line neuromasts at concentrations ≥ 20 μg/L. The onset of cell death in the larval mechanosensory system was rapid ( < 1 h). When copper-exposed zebrafish were transferred to clean water, the lateral line regenerated over the course of 2 d. In contrast, the lateral line of larvae exposed continuously to dissolved copper (50 μg/L) for 3 d did not recover. Collectively, these results show that peripheral mechanosensory neurons are vulnerable to the neurotoxic effects of copper. Consequently, dissolved copper in non-point source storm-water runoff has the potential to interfere with rheotaxis, schooling, predator avoidance, and other mechano-sensory-mediated behaviors that are important for the migration and survival of fish.
机译:溶解的铜是城市和城市化流域中越来越常见的面源污染物。在本研究中,我们调查了溶解的铜对幼虫斑马鱼(Danio rerio)的外周机械感测系统或侧线的亚致死作用。将斑马鱼幼虫暴露于铜(0-65μg/ L),并结合体内荧光成像,共聚焦显微镜,扫描电子显微镜和常规组织学检查单个侧线受体神经元的细胞毒性反应。浓度≥20μg/ L时,溶解的铜在确定的侧线神经瘤中触发神经元的剂量依赖性损失。幼虫机械感觉系统中的细胞死亡起效较快(<1小时)。当将暴露于铜的斑马鱼转移到清水中时,侧线在2 d的过程中再生。相反,连续暴露于溶解铜(50μg/ L)3天的幼虫侧线没有恢复。总而言之,这些结果表明,外周机械感觉神经元易受铜的神经毒性作用的影响。因此,非点源暴雨径流中的溶解铜有可能干扰流变性,放牧,避免捕食和其他对鱼类迁移和存活至关重要的机械感官介导的行为。

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