Agonists of epoxyeicosatrienoic acids reduce infarct size and ameliorate cardiac dysfunction via activation of HO-1 and Wnt1 canonical pathway

被引:44
作者
Cao, Jian [1 ]
Tsenovoy, Peter L. [2 ]
Thompson, Ellen A. [3 ]
Falck, John R. [4 ]
Touchon, Robert [3 ]
Sodhi, Komal [3 ]
Rezzani, Rita [2 ]
Shapiro, Joseph I. [3 ]
Abraham, Nader G. [2 ,3 ]
机构
[1] Chinese Peoples Liberat Army Gen Hosp, Beijing 100853, Peoples R China
[2] New York Med Coll, Valhalla, NY 10595 USA
[3] Marshall Univ, Joan C Edwards Sch Med, Huntington, WV 25701 USA
[4] Univ Texas SW Med Ctr Dallas, Dallas, TX 75390 USA
基金
美国国家卫生研究院;
关键词
Epoxyeicosatrienoic acid; Heme oxygenase-1; Myocardial infarction; Angiogenesis; Wnt1; HIGH-FAT DIET; IMPROVES INSULIN SENSITIVITY; HEME OXYGENASE-1; 11,12-EPOXYEICOSATRIENOIC ACID; CARBON-MONOXIDE; MYOCARDIAL-INFARCTION; VASCULAR DYSFUNCTION; OXIDATIVE STRESS; UP-REGULATION; STEM-CELLS;
D O I
10.1016/j.prostaglandins.2015.01.002
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
Myocardial infarction (MI) is complicated by ventricular fibrosis and associated diastolic and systolic failure. Emerging studies implicate Wnt1 signaling in the formation of new blood vessels. Epoxyeicosatrienoic acids (EETs)-mediated up-regulation of heme oxygenase-1 (HO-1) protects against the detrimental consequences of MI in several animal models, however, the mechanism(s) by which this occurs remains unclear. The aim of this study was to examine these mechanisms in the LAD ligation animal model of post infarcted heart failure. Specifically, we sought to clarify the mechanistic basis of the interactions of the Wnt1 canonical pathway, HO-1 and associated angiogenesis. Human microvascular endothelial cells (HMECs) were exposed to anoxia and treated with the EET agonist, NUDSA, in the presence and absence of tin mesoporphyrin (SnMP). Increased capillary density, and Wnt1 and HO-1 expression occurred in cells treated with NUDSA. Anoxic HMECs treated with NUDSA and Wnt1 siRNA, exhibited decreased in the expression of beta-catenin and the Wnt1 target gene, PPAR delta (p < 0.05 vs. NUDSA). Furthermore, blocking the Wnt1 antagonist, Dickkopf I, by siRNA increased beta-catenin and PPAR delta expression, and this effect was further enhanced by the concurrent administration of NUDSA. In in vivo experiments, C57B16 mice were divided into 4 groups: sham, mice with MI via LAD ligation and mice with MI treated with NUDSA, with and without SnMP. Increased fractional area change (FAC) and myocardial angiogenesis were observed in mice treated with NUDSA (p < 0.05 vs. MI). Increased expression of HO-1, Wnt1, beta-catenin, adiponectin, and phospho-endothelial nitric oxide synthetase (p-eNOS), and a decrease in the glycosylated subunit of nicotinamide adenine dinucleotide phosphate (NADPH) oxidase, gp91(phox) expression occurred in cardiac tissue of mice treated with NUDSA (p < 0.05 vs. MI). SnMP reversed these effects. This novel study demonstrates that increasing the canonical Wnt1 signaling cascade with the subsequent increase in HO-1, adiponectin and angiogenesis ameliorates fibrosis and cardiac dysfunction in a mouse model of MI and supports the hypothesis that HO-1 is an integral component of the EETs-adiponectin axis and is central for the control of resistance to fibrosis and vascular dysfunction and in part determine how they influence the cellular/vascular homeostasis and provides insight into the mechanisms involved in vascular dysfunction as well as potential targets for the treatment of CVD. (C) 2015 Elsevier Inc. All rights reserved.
引用
收藏
页码:76 / 86
页数:11
相关论文
共 73 条
[61]   Microvascular patterning is controlled by fine-tuning the Akt signal [J].
Sun, JF ;
Phung, T ;
Shiojima, I ;
Felske, T ;
Upalakalin, JN ;
Feng, D ;
Kornaga, T ;
Dor, T ;
Dvorak, AM ;
Walsh, K ;
Benjamin, LE .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (01) :128-133
[62]   Oxidative stress and cardiac repair/remodeling following infarction [J].
Sun, Yao .
AMERICAN JOURNAL OF THE MEDICAL SCIENCES, 2007, 334 (03) :197-205
[63]   Pericardial Fat Volume Correlates With Inflammatory Markers: The Framingham Heart Study [J].
Tadros, Thomas M. ;
Massaro, Joseph M. ;
Rosito, Guido A. ;
Hoffmann, Udo ;
Vasan, Ramachandran S. ;
Larson, Martin G. ;
Keaney, John F., Jr. ;
Lipinska, Izabella ;
Meigs, James B. ;
Kathiresan, Sekar ;
O'Donnell, Christopher J. ;
Fox, Caroline S. ;
Benjamin, Emelia J. .
OBESITY, 2010, 18 (05) :1039-1045
[64]   Increased heme-oxygenase 1 expression in mesenchymal stem cell-derived adipocytes decreases differentiation and lipid accumulation via upregulation of the canonical Wnt signaling cascade [J].
Vanella, Luca ;
Sodhi, Komal ;
Kim, Dong Hyun ;
Puri, Nitin ;
Maheshwari, Mani ;
Hinds, Terry D., Jr. ;
Bellner, Lars ;
Goldstein, Dov ;
Peterson, Stephen J. ;
Shapiro, Joseph I. ;
Abraham, Nader G. .
STEM CELL RESEARCH & THERAPY, 2013, 4
[65]   Crosstalk between EET and HO-1 downregulates Bach1 and adipogenic marker expression in mesenchymal stem cell derived adipocytes [J].
Vanella, Luca ;
Kim, Dong Hyun ;
Sodhi, Komal ;
Barbagallo, Ignazio ;
Burgess, Angela P. ;
Falck, John R. ;
Schwartzman, Michal L. ;
Abraham, Nader G. .
PROSTAGLANDINS & OTHER LIPID MEDIATORS, 2011, 96 (1-4) :54-62
[66]  
Wang Chao-Yung, 2010, Chang Gung Med J, V33, P13
[67]   Cardioprotective and Antiapoptotic Effects of Heme Oxygenase-1 in the Failing Heart [J].
Wang, Guangwu ;
Hamid, Tariq ;
Keith, Rachel J. ;
Zhou, Guihua ;
Partridge, Charles R. ;
Xiang, Xilin ;
Kingery, Justin R. ;
Lewis, Robert K. ;
Li, Qianhong ;
Rokosh, D. Gregg ;
Ford, Rachael ;
Spinale, Francis G. ;
Riggs, Daniel W. ;
Srivastava, Sanjay ;
Bhatnagar, Aruni ;
Bolli, Roberto ;
Prabhu, Sumanth D. .
CIRCULATION, 2010, 121 (17) :1912-U78
[68]   Adiponectin, cardiovascular function, and hypertension [J].
Wang, Zhao V. ;
Scherer, Philipp E. .
HYPERTENSION, 2008, 51 (01) :8-14
[69]   Obesity, atherosclerosis and the vascular endothelium: mechanisms of reduced nitric oxide bioavailability in obese humans [J].
Williams, IL ;
Wheatcroft, SB ;
Shah, AM ;
Kearney, MT .
INTERNATIONAL JOURNAL OF OBESITY, 2002, 26 (06) :754-764
[70]   Carbon monoxide: Endogenous production, physiological functions, and pharmacological applications [J].
Wu, LY ;
Wang, R .
PHARMACOLOGICAL REVIEWS, 2005, 57 (04) :585-630