首页> 美国卫生研究院文献>Interdisciplinary Toxicology >Mitochondrial respiratory chain inhibition and Na+K+ATPase dysfunction are determinant factors modulating the toxicity of nickel in the brain of indian catfish Clarias batrachus L.
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Mitochondrial respiratory chain inhibition and Na+K+ATPase dysfunction are determinant factors modulating the toxicity of nickel in the brain of indian catfish Clarias batrachus L.

机译:线粒体呼吸链抑制和Na + K + ATPase功能异常是调节印度cat鱼Clarias batrachus L大脑中镍毒性的决定性因素。

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摘要

Nickel is a potential neurotoxic pollutant inflicting damage in living organisms, including fish, mainly through oxidative stress. Previous studies have demonstrated the impact of nickel toxicity on mitochondrial function, but there remain lacunae on the damage inflicted at mitochondrial respiratory level. Deficient mitochondrial function usually affects the activities of important adenosinetriphosphatases responsible for the maintenance of normal neuronal function, namely Na K ATPase, as explored in our study. Previous reports demonstrated the dysfunction of this enzyme upon nickel exposure but the contributing factors for the inhibition of this enzyme remained unexplored. The main purpose of this study was to elucidate the impact of nickel neurotoxicity on mitochondrial respiratory complexes and Na K ATPase in the piscine brain and to determine the contributing factors that had an impact on the same. Adult were exposed to nickel treated water at 10% and 20% of the 96 h LC50 value (41 mg.l ) respectively and sampled on 20, 40 and 60 days. Exposure of fish brain to nickel led to partial inhibition of complex IV of mitochondrial respiratory chain, however, the activities of complex I, II and III remained unaltered. This partial inhibition of mitochondrial respiratory chain might have been sufficient to lower mitochondrial energy production in mitochondria that contributed to the partial dysfunction of Na K ATPase. Besides energy depletion other contributing factors were involved in the dysfunction of this enzyme, like loss of thiol groups for enzyme activity and lipid peroxidation-derived end products that might have induced conformational and functional changes. However, providing direct evidence for such conformational and functional changes of Na K ATPase was beyond the scope of the present study. In addition, immunoblotting results also showed a decrease in Na K ATPase protein expression highlighting the impact of nickel neurotoxicity on the expression of the enzyme itself. The implication of the inhibition of mitochondrial respiration and Na K ATPase dysfunction was the neuronal death as evidenced by enhanced caspase-3 and caspase-9 activities. Thus, this study established the deleterious impact of nickel neurotoxicity on mitochondrial functions in the piscine brain and identified probable contributing factors that can act concurrently in the inhibition of Na K ATPase. This study also provided a vital clue about the specific areas that the therapeutic agents should target to counter nickel neurotoxicity.
机译:镍是一种潜在的神经毒性污染物,主要通过氧化应激对包括鱼类在内的生物造成损害。先前的研究表明镍毒性对线粒体功能的影响,但在线粒体呼吸水平造成的损害方面仍然存在缺陷。线粒体功能低下通常会影响负责维持正常神经元功能的重要腺苷三磷酸酶(即Na K ATPase)的活性,如我们的研究中所述。先前的报道证实了该酶在镍暴露下的功能障碍,但尚未发现抑制该酶的作用因素。这项研究的主要目的是阐明镍神经毒性对鱼脑线粒体呼吸复合物和Na K ATPase的影响,并确定对其产生影响的因素。成人分别以96小时LC50值(41 mg.l)的10%和20%暴露于镍处理过的水中,并在20、40和60天取样。鱼脑暴露于镍导致部分抑制线粒体呼吸链复合物IV,但是复合物I,II和III的活性保持不变。线粒体呼吸链的这种部分抑制可能足以降低线粒体中的线粒体能量产生,而线粒体的能量生成是导致Na K ATPase的部分功能障碍的原因。除了能量消耗外,该酶的功能障碍还涉及其他促成因素,例如酶活性中巯基的丢失和脂质过氧化衍生的最终产物,这些终产物可能会导致构象和功能改变。但是,为Na K ATPase的这种构象和功能变化提供直接证据超出了本研究的范围。此外,免疫印迹结果还显示Na K ATPase蛋白表达下降,突出了镍神经毒性对酶本身表达的影响。 caspase-3和caspase-9活性增强证明线粒体呼吸抑制和Na K ATPase功能异常是神经元死亡。因此,本研究建立了镍神经毒性对鱼类脑线粒体功能的有害影响,并确定了可能同时抑制Na K ATPase的可能贡献因素。这项研究还为治疗剂应针对的特定领域提供了重要线索,以对抗镍的神经毒性。

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