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首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Chemotherapeutic Drugs and Mitochondrial Dysfunction: Focus on Doxorubicin, Trastuzumab, and Sunitinib
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Chemotherapeutic Drugs and Mitochondrial Dysfunction: Focus on Doxorubicin, Trastuzumab, and Sunitinib

机译:化学治疗药物和线粒体功能障碍:专注于多柔比星,曲妥珠单抗和孙尼替尼

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Many cancer therapies produce toxic side effects whose molecular mechanisms await full elucidation. The most feared and studied side effect of chemotherapeutic drugs is cardiotoxicity. Also, skeletal muscle physiology impairment has been recorded after many chemotherapeutical treatments. However, only doxorubicin has been extensively studied for its side effects on skeletal muscle. Chemotherapeutic-induced adverse side effects are, in many cases, mediated by mitochondrial damage. In particular, trastuzumab and sunitinib toxicity is mainly associated with mitochondria impairment and is mostly reversible. Vice versa, doxorubicin-induced toxicity not only includes mitochondria damage but can also lead to a more robust and extensive cell injury which is often irreversible and lethal. Drugs interfering with mitochondrial functionality determine the depletion of ATP reservoirs and lead to subsequent reversible contractile dysfunction. Mitochondrial damage includes the impairment of the respiratory chain and the loss of mitochondrial membrane potential with subsequent disruption of cellular energetic. In a context of increased stress, AMPK has a key role in maintaining energy homeostasis, and inhibition of the AMPK pathway is one of the proposed mechanisms possibly mediating mitochondrial toxicity due to chemotherapeutics. Therapies targeting and protecting cell metabolism and energy management might be useful tools in protecting muscular tissues against the toxicity induced by chemotherapeutic drugs.
机译:许多癌症疗法产生有毒副作用,其分子机制可适于阐明。最令人担心和研究的化学治疗药物的副作用是心脏毒性。此外,经过许多化学治疗后,骨骼肌生理障碍已被记录。然而,只有对骨骼肌的副作用进行了广泛研究了多柔比星。在许多情况下,化学治疗诱导的不良副作用是由线粒体损伤介导的。特别是,曲妥珠单抗和孙氨基虫毒性主要与线粒体损伤有关,大多是可逆的。反之亦然,多柔比星引起的毒性不仅包括线粒体损伤,而且还可以导致更强大,更广泛的细胞损伤,通常是不可逆转的和致命的。干扰线粒体功能的药物决定了ATP储存器的耗竭,并导致随后的可逆收缩功能障碍。线粒体损伤包括呼吸链的损害以及线粒体膜电位的丧失,随后的细胞能量破坏。在压力增加的背景下,AMPK在维持能量稳态中具有关键作用,并且对AMPK途径的抑制是可能导致的化学治疗剂介导线粒体毒性的提出机制之一。靶向和保护细胞代谢和能量管理的疗法可能是保护肌肉组织免受化学治疗药物诱导的毒性的有用工具。

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