Antioxidant treatment normalizes mitochondrial energetics and myocardial insulin sensitivity independently of changes in systemic metabolic homeostasis in a mouse model of the metabolic syndrome

被引:26
作者
Ilkun, Olesya [1 ]
Wilde, Nicole [1 ]
Tuinei, Joseph [1 ]
Pires, Karla M. P. [1 ]
Zhu, Yi [1 ]
Bugger, Heiko [1 ]
Soto, Jamie [1 ,2 ]
Wayment, Benjamin [3 ]
Olsen, Curtis [3 ]
Litwin, Sheldon E. [3 ]
Abel, E. Dale [1 ,2 ]
机构
[1] Univ Utah, Sch Med, Program Mol Med, Div Endocrinol Metab & Diabet, Salt Lake City, UT 84112 USA
[2] Univ Iowa, Roy J & Lucille A Carver Coll Med, Fraternal Order Eagles Diabet Res Ctr, Div Endocrinol & Metab, Iowa City, IA 52242 USA
[3] Univ Utah, Sch Med, Div Cardiol, Salt Lake City, UT 84112 USA
基金
美国国家卫生研究院;
关键词
FATTY-ACID OXIDATION; DIET-INDUCED OBESITY; DIABETIC AKITA MICE; CARDIAC-HYPERTROPHY; SKELETAL-MUSCLE; REACTIVE OXYGEN; ADIPOSE-TISSUE; HEART-FAILURE; DYSFUNCTION; PROTEIN;
D O I
10.1016/j.yjmcc.2015.05.012
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Cardiac dysfunction in obesity is associated with mitochondrial dysfunction, oxidative stress and altered insulin sensitivity. Whether oxidative stress directly contributes to myocardial insulin resistance remains to be determined. This study tested the hypothesis that ROS scavenging will improve mitochondrial function and insulin sensitivity in the hearts of rodent models with varying degrees of insulin resistance and hyperglycemia. The catalytic antioxidant MnTBAP was administered to the uncoupling protein-diphtheria toxin A (UCP-DTA) mouse model of insulin resistance (IR) and obesity, at early and late time points in the evolution of IR, and to db/db mice with severe obesity and type-two diabetes. Mitochondrial function was measured in saponin-permeabilized cardiac fibers. Aconitase activity and hydrogen peroxide emission were measured in isolated mitochondria. Insulin-stimulated glucose oxidation, glycolysis and fatty acid oxidation rates were measured in isolated working hearts, and 2-deoxyglucose uptake was measured in isolated cardiomyocytes. Four weeks of MnTBAP attenuated glucose intolerance in 13-week-old UCP-DTA mice but was without effect in 24-week-old UCP-DTA mice and in db/db mice. Despite the absence of improvement in the systemic metabolic milieu, MnTBAP reversed cardiac mitochondrial oxidative stress and improved mitochondria] bioenergetics by increasing ATP generation and reducing mitochondrial uncoupling in all models. MnTBAP also improved myocardial insulin mediated glucose metabolism in 13 and 24-week-old UCP-DTA mice. Pharmacological ROS scavenging improves myocardial energy metabolism and insulin responsiveness in obesity and type 2 diabetes via direct effects that might be independent of changes in systemic metabolism. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:104 / 116
页数:13
相关论文
共 50 条
[1]   Positive and Negative Regulation of Insulin Signaling by Reactive Oxygen and Nitrogen Species [J].
Bashan, Nava ;
Kovsan, Julia ;
Kachko, Ilana ;
Ovadia, Hilla ;
Rudich, Assaf .
PHYSIOLOGICAL REVIEWS, 2009, 89 (01) :27-71
[2]   Insulin signaling coordinately regulates cardiac size, metabolism, and contractile protein isoform expression [J].
Belke, DD ;
Betuing, S ;
Tuttle, MJ ;
Graveleau, C ;
Young, ME ;
Pham, M ;
Zhang, DF ;
Cooksey, RC ;
McClain, DA ;
Litwin, SE ;
Taegtmeyer, H ;
Severson, D ;
Kahn, CR ;
Abel, ED .
JOURNAL OF CLINICAL INVESTIGATION, 2002, 109 (05) :629-639
[3]   Reduced mitochondrial oxidative capacity and increased mitochondrial uncoupling impair myocardial energetics in obesity [J].
Boudina, S ;
Sena, S ;
O'Neill, BT ;
Tathireddy, P ;
Young, ME ;
Abel, ED .
CIRCULATION, 2005, 112 (17) :2686-2695
[4]   Mitochondrial energetics in the heart in obesity-related diabetes - Direct evidence for increased uncoupled respiration and activation of uncoupling proteins [J].
Boudina, Sihem ;
Sena, Sandra ;
Theobald, Heather ;
Sheng, Xiaoming ;
Wright, Jordan J. ;
Hu, Xia Xuan ;
Aziz, Salwa ;
Johnson, Josie I. ;
Bugger, Heiko ;
Zaha, Vlad G. ;
Abel, E. Dale .
DIABETES, 2007, 56 (10) :2457-2466
[5]   Early Mitochondrial Adaptations in Skeletal Muscle to Diet-Induced Obesity Are Strain Dependent and Determine Oxidative Stress and Energy Expenditure But Not Insulin Sensitivity [J].
Boudina, Sihem ;
Sena, Sandra ;
Sloan, Crystal ;
Tebbi, Ali ;
Han, Yong Hwan ;
O'Neill, Brian T. ;
Cooksey, Robert C. ;
Jones, Deborah ;
Holland, William L. ;
McClain, Donald A. ;
Abel, E. Dale .
ENDOCRINOLOGY, 2012, 153 (06) :2677-2688
[6]   Contribution of Impaired Myocardial Insulin Signaling to Mitochondrial Dysfunction and Oxidative Stress in the Heart [J].
Boudina, Sihem ;
Bugger, Heiko ;
Sena, Sandra ;
O'Neill, Brian T. ;
Zaha, Vlad G. ;
Ilkun, Olesya ;
Wright, Jordan J. ;
Mazumder, Pradip K. ;
Palfreyman, Eric ;
Tidwell, Timothy J. ;
Theobald, Heather ;
Khalimonchuk, Oleh ;
Wayment, Benjamin ;
Sheng, Xiaoming ;
Rodnick, Kenneth J. ;
Centini, Ryan ;
Chen, Dong ;
Litwin, Sheldon E. ;
Weimer, Bart E. ;
Abel, E. Dale .
CIRCULATION, 2009, 119 (09) :1272-U111
[7]   Genetic loss of insulin receptors worsens cardiac efficiency in diabetes [J].
Bugger, Heiko ;
Riehle, Christian ;
Jaishy, Bharat ;
Wende, Adam R. ;
Tuinei, Joseph ;
Chen, Dong ;
Soto, Jamie ;
Pires, Karla M. ;
Boudina, Sihem ;
Theobald, Heather A. ;
Luptak, Ivan ;
Wayment, Benjamin ;
Wang, Xiaohui ;
Litwin, Sheldon E. ;
Weimer, Bart C. ;
Abel, E. Dale .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2012, 52 (05) :1019-1026
[8]   Tissue-Specific Remodeling of the Mitochondrial Proteome in Type 1 Diabetic Akita Mice [J].
Bugger, Heiko ;
Chen, Dong ;
Riehle, Christian ;
Soto, Jamie ;
Theobald, Heather A. ;
Hu, Xiao X. ;
Ganesan, Balasubramanian ;
Weimer, Bart C. ;
Abel, E. Dale .
DIABETES, 2009, 58 (09) :1986-1997
[9]   A high-fat diet increases adiposity but maintains mitochondrial oxidative enzymes without affecting development of heart failure with pressure overload [J].
Chess, David J. ;
Khairallah, Ramzi J. ;
O'Shea, Karen M. ;
Xu, Wenhong ;
Stanley, William C. .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2009, 297 (05) :H1585-H1593
[10]   Redox regulation of protein tyrosine phosphatases during receptor tyrosine kinase signal transduction [J].
Chiarugi, P ;
Cirri, P .
TRENDS IN BIOCHEMICAL SCIENCES, 2003, 28 (09) :509-514