Cardiomyocyte death in doxorubicin-induced cardiotoxicity

被引:0
作者
Yi-Wei Zhang
Jianjian Shi
Yuan-Jian Li
Lei Wei
机构
[1] Indiana University,Riley Heart Research Center, Wells Center for Pediatric Research
[2] School of Medicine,Department of Pharmacology, School of Pharmaceutical Sciences
[3] Central South University,Riley Heart Research Center, Wells Center for Pediatric Research
[4] Indiana University,Department of Pharmacology, School of Pharmaceutical Sciences
[5] School of Medicine,undefined
[6] Central South University,undefined
来源
Archivum Immunologiae et Therapiae Experimentalis | 2009年 / 57卷
关键词
cardiomyocyte; doxorubicin; apoptosis; necrosis; autophagy;
D O I
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摘要
Doxorubicin (DOX) is one of the most widely used and successful antitumor drugs, but its cumulative and dose-dependent cardiac toxicity has been a major concern of oncologists in cancer therapeutic practice for decades. With the increasing population of cancer survivors, there is a growing need to develop preventive strategies and effective therapies against DOX-induced cardiotoxicity, in particular late-onset cardiomyopathy. Although intensive investigations on DOX-induced cardiotoxicity have continued for decades, the underlying mechanisms responsible for DOX-induced cardiotoxicity have not been completely elucidated. A rapidly expanding body of evidence supports the notion that cardiomyocyte death by apoptosis and necrosis is a primary mechanism of DOX-induced cardiomyopathy and that other types of cell death, such as autophagy and senescence/aging, may participate in this process. This review focuses on the current understanding of the molecular mechanisms underlying DOX-induced cardiomyocyte death, including the major primary mechanism of excess production of reactive oxygen species (ROS) and other recently discovered ROS-independent mechanisms. The different sensitivities to DOX-induced cell death signals between adult and young cardiomyocytes will also be discussed.
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页码:435 / 445
页数:10
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  • [1] Aihara Y(2000)Doxorubicin represses CARP gene transcription through the generation of oxidative stress in neonatal rat cardiac myocytes: possible role of serine/threonine kinase-dependent pathways J Mol Cell Cardiol 32 1401-1414
  • [2] Kurabayashi M(2000)The apoptotic signaling pathway activated by Toll-like receptor-2 EMBO J 19 3325-3336
  • [3] Tanaka T(2009)ARC is a critical cardiomyocyte survival switch in doxorubicin cardiotoxicity J Mol Med 87 401-410
  • [4] Aliprantis AO(2004)Essential role of GATA-4 in cell survival and drug-induced cardiotoxicity Proc Natl Acad Sci USA 101 6975-6980
  • [5] Yang RB(2004)Anti-oxidants and apoptosis: attenuation of doxorubicin induced cardiomyopathy by carvedilol J Mol Cell Cardiol 37 817-821
  • [6] Weiss DS(2000)Acute doxorubicin cardiotoxicity involves cardiomyocyte apoptosis Cancer Res 60 1789-1792
  • [7] An J(2006)Switch from caspasedependent to caspase-independent death during heart development: essential role of endonuclease G in ischemia-induced DNA processing of differentiated cardiomyocytes J Biol Chem 281 22943-22952
  • [8] Li P(2007)Protection by flavonoids against anthracycline cardiotoxicity: from chemistry to clinical trials Cardiovasc Toxicol 7 154-159
  • [9] Li J(2004)Annexin V imaging of acute doxorubicin cardiotoxicity (apoptosis) in rats J Nucl Med 45 842-848
  • [10] Aries A(2008)Treatment-sensitive premature renal and heart senescence in hypertension Hypertension 52 61-62