首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Mitochondrial oxidative stress and respiratory chain dysfunction account for liver toxicity during amiodarone but not dronedarone administration.
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Mitochondrial oxidative stress and respiratory chain dysfunction account for liver toxicity during amiodarone but not dronedarone administration.

机译:线粒体氧化应激和呼吸链功能障碍是胺碘酮治疗期间肝毒性的原因,但决不是决奈达隆的原因。

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The role played by oxidative stress in amiodarone-induced mitochondrial toxicity is debated. Dronedarone shows pharmacological properties similar to those of amiodarone but several differences in terms of toxicity. In this study, we analyzed the effects of the two drugs on liver mitochondrial function by administering an equivalent human dose to a rat model. Amiodarone increased mitochondrial H(2)O(2) synthesis, which in turn induced cardiolipin peroxidation. Moreover, amiodarone inhibited Complex I activity and uncoupled oxidative phosphorylation, leading to a reduction in the hepatic ATP content. We also observed a modification of membrane phospholipid composition after amiodarone administration. N-acetylcysteine completely prevented such effects. Although dronedarone shares with amiodarone the capacity to induce uncoupling of oxidative phosphorylation, it did not show any of the oxidative effects and did not impair mitochondrial bioenergetics. Our data provide important insights into the mechanism of mitochondrial toxicity induced by amiodarone. These results may greatly influence the clinical application and toxicity management of these two antiarrhythmic drugs.
机译:氧化应激在胺碘酮引起的线粒体毒性中所起的作用尚有争议。决奈达隆显示出与胺碘酮相似的药理特性,但毒性方面存在一些差异。在这项研究中,我们通过对大鼠模型施用等效的人剂量,分析了这两种药物对肝线粒体功能的影响。胺碘酮增加线粒体H(2)O(2)合成,进而诱导心磷脂过氧化。此外,胺碘酮抑制复合物I的活性和未偶联的氧化磷酸化,从而导致肝ATP含量的降低。我们还观察到胺碘酮给药后膜磷脂成分的改变。 N-乙酰半胱氨酸完全阻止了这种作用。尽管决奈达隆与胺碘酮具有诱导氧化磷酸化解偶联的能力,但它没有显示任何氧化作用,也不损害线粒体的生物能。我们的数据为胺碘酮引起的线粒体毒性机理提供了重要的见识。这些结果可能会极大地影响这两种抗心律不齐药物的临床应用和毒性管理。

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