Resveratrol prevents doxorubicin cardiotoxicity through mitochondrial stabilization and the Sirt1 pathway

被引:259
作者
Danz, Elizabeth D. Brookins [1 ]
Skramsted, Jeremy [1 ]
Henry, Nicholas [1 ]
Bennett, James A. [2 ]
Keller, Rebecca S. [1 ]
机构
[1] Albany Med Coll, Ctr Cardiovasc Sci, Albany, NY 12208 USA
[2] Albany Med Coll, Ctr Immunol & Microbial Dis, Albany, NY 12208 USA
关键词
Doxorubicin; Cardiotoxicity; Resveratrol; Mitochondria; ROS; Sirt1; Free radicals; FOXO TRANSCRIPTION FACTORS; SUPEROXIDE-DISMUTASE; ISCHEMIA-REPERFUSION; INDUCED APOPTOSIS; OXIDATIVE STRESS; REACTIVE OXYGEN; ANTIESTROGENIC PROPERTIES; TRANS-RESVERATROL; MYOCYTE INJURY; RED WINE;
D O I
10.1016/j.freeradbiomed.2009.03.011
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Doxorubicin (DOX) is one of the most effective chemotherapeutic drugs; however, its incidence of cardiotoxicity Compromises its therapeutic index. DOX-induced heart failure is thought to be caused by reduction/oxidation cycling of DOX to generate oxidative stress and cardiomyocyte cell death. Resveratrol (RV), a stilbene found in red wine, has been reported to play a cardioprotective role in diseases associated with oxidative stress. The objective of this study was to test the ability of RV to protect against DOX-induced cardiomyocyte death. We hypothesized that RV protects cardiomyocytes from DOX-induced oxidative stress and subsequent cell death through changes in mitochondrial function. DOX induced a rapid increase in reactive oxygen species (RCS) production in cardiac cell mitochondria, which was inhibited by pretreatment with RV, most likely owing to an increase in MnSOD activity. This effect of RV caused additional polarization of the mitochondria in the absence and presence of DOX to increase mitochondrial function. RV pretreatment also prevented DOX-induced cardiomyocyte death. The protective ability of RV against DOX was abolished when Sirt1 was inhibited by nicotinamide. Our data Suggest that RV protects against DOX-induced oxidative stress through changes in mitochondrial function, specifically the Sirt1 pathway leading to cardiac cell survival. (C) 2009 Elsevier Inc. All rights reserved.
引用
收藏
页码:1589 / 1597
页数:9
相关论文
共 61 条
  • [1] Aggarwal BB, 2004, ANTICANCER RES, V24, P2783
  • [2] Mitochondrial ATP-sensitive potassium channels inhibit apoptosis induced by oxidative stress in cardiac cells
    Akao, M
    Ohler, A
    O'Rourke, B
    Marbán, E
    [J]. CIRCULATION RESEARCH, 2001, 88 (12) : 1267 - 1275
  • [3] Sirt1 regulates aging and resistance to oxidative stress in the heart
    Alcendor, Ralph R.
    Gao, Shumin
    Zhai, Peiyong
    Zablocki, Daniela
    Holle, Eric
    Yu, Xianzhong
    Tian, Bin
    Wagner, Thomas
    Vatner, Stephen F.
    Sadoshima, Junichi
    [J]. CIRCULATION RESEARCH, 2007, 100 (10) : 1512 - 1521
  • [4] Silent information regulator 2α, a longevity factor and class III histone deacetylase, is an essential endogenous apoptosis inhibitor in cardiac myocytes
    Alcendor, RR
    Kirshenbaum, LA
    Imai, S
    Vatner, SF
    Sadoshima, J
    [J]. CIRCULATION RESEARCH, 2004, 95 (10) : 971 - 980
  • [5] Assem M, 1997, AM J PATHOL, V151, P549
  • [6] Resveratrol improves health and survival of mice on a high-calorie diet
    Baur, Joseph A.
    Pearson, Kevin J.
    Price, Nathan L.
    Jamieson, Hamish A.
    Lerin, Carles
    Kalra, Avash
    Prabhu, Vinayakumar V.
    Allard, Joanne S.
    Lopez-Lluch, Guillermo
    Lewis, Kaitlyn
    Pistell, Paul J.
    Poosala, Suresh
    Becker, Kevin G.
    Boss, Olivier
    Gwinn, Dana
    Wang, Mingyi
    Ramaswamy, Sharan
    Fishbein, Kenneth W.
    Spencer, Richard G.
    Lakatta, Edward G.
    Le Couteur, David
    Shaw, Reuben J.
    Navas, Placido
    Puigserver, Pere
    Ingram, Donald K.
    de Cabo, Rafael
    Sinclair, David A.
    [J]. NATURE, 2006, 444 (7117) : 337 - 342
  • [7] Beauchamp C., 1971, ANAL BIOCHEM, V44, P276, DOI DOI 10.1016/0003-2697(71)90370-8
  • [8] Bhat KPL, 2001, CANCER RES, V61, P7456
  • [9] Bhat KPL, 2001, CANCER RES, V61, P6137
  • [10] Inhibition of silencing and accelerated aging by nicotinamide, a putative negative regulator of yeast Sir2 and human SIRT1
    Bitterman, KJ
    Anderson, RM
    Cohen, HY
    Latorre-Esteves, M
    Sinclair, DA
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (47) : 45099 - 45107