Division of Cardiology, Peter Munk Cardiac Centre and the Ted Rogers Centre for Heart Research, University Health Network, Toronto, Ontario, Canada.
Medicine Department, East Division, Faculty of Medicine, University of Chile. Santiago, Chile; Critical Care Patient Unit, Hospital Salvador, Santiago, Chile.
Oxid Med Cell Longev. 2021 Jan 25;2021:8863789. doi: 10.1155/2021/8863789. eCollection 2021.
Anthracycline-induced cardiotoxicity (AIC) persists as a significant cause of morbidity and mortality in cancer survivors. Although many protective strategies have been evaluated, cardiotoxicity remains an ongoing threat. The mechanisms of AIC remain unclear; however, several pathways have been proposed, suggesting a multifactorial origin. When the central role of topoisomerase 2 in the pathophysiology of AIC was described some years ago, the classical reactive oxygen species (ROS) hypothesis shifted to a secondary position. However, new insights have reemphasized the importance of the role of oxidative stress-mediated signaling as a common pathway and a critical modulator of the different mechanisms involved in AIC. A better understanding of the mechanisms of cardiotoxicity is crucial for the development of treatment strategies. It has been suggested that the available therapeutic interventions for AIC could act on the modulation of oxidative balance, leading to a reduction in oxidative stress injury. These indirect antioxidant effects make them an option for the primary prevention of AIC. In this review, our objective is to provide an update of the accumulated knowledge on the role of oxidative stress in AIC and the modulation of the redox balance by potential preventive strategies.
蒽环类药物诱导的心脏毒性(AIC)仍然是癌症幸存者发病率和死亡率的重要原因。尽管已经评估了许多保护策略,但心脏毒性仍然是一个持续存在的威胁。AIC 的机制仍不清楚;然而,已经提出了几种途径,表明其具有多因素起源。几年前描述了拓扑异构酶 2 在 AIC 病理生理学中的核心作用时,经典的活性氧(ROS)假说退居次要地位。然而,新的见解再次强调了氧化应激介导的信号转导作为一个共同途径和 AIC 涉及的不同机制的关键调节剂的重要性。更好地了解心脏毒性的机制对于治疗策略的发展至关重要。有人提出,AIC 的现有治疗干预措施可以通过调节氧化平衡来发挥作用,从而减少氧化应激损伤。这些间接的抗氧化作用使它们成为 AIC 一级预防的选择。在这篇综述中,我们的目的是提供关于氧化应激在 AIC 中的作用以及潜在预防策略对氧化还原平衡的调节的累积知识的最新信息。