Alteration of Energy Substrates and ROS Production in Diabetic Cardiomyopathy

被引:54
作者
Lorenzo, O. [1 ,2 ]
Ramirez, E. [1 ]
Picatoste, B. [1 ]
Egido, J. [1 ,2 ]
Tunon, J. [1 ]
机构
[1] Univ Autonoma Madrid, IIS Fdn Jimenez Diaz, Madrid 28040, Spain
[2] Spanish Biomed Res Ctr Diabet & Associated Metab, Barcelona 08017, Spain
关键词
PROLIFERATOR-ACTIVATED RECEPTORS; OXYGEN SPECIES ROS; PPAR-ALPHA AGONIST; PROTEIN-KINASE-C; FACTOR-KAPPA-B; OXIDATIVE STRESS; INSULIN-RESISTANCE; TGF-BETA; ENDOTHELIAL DYSFUNCTION; CARDIAC DYSFUNCTION;
D O I
10.1155/2013/461967
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Diabetic cardiomyopathy is initiated by alterations in energy substrates. Despite excess of plasma glucose and lipids, the diabetic heart almost exclusively depends on fatty acid degradation. Glycolytic enzymes and transporters are impaired by fatty acid metabolism, leading to accumulation of glucose derivatives. However, fatty acid oxidation yields lower ATP production per mole of oxygen than glucose, causing mitochondrial uncoupling and decreased energy efficiency. In addition, the oxidation of fatty acids can saturate and cause their deposition in the cytosol, where they deviate to induce toxic metabolites or gene expression by nuclear-receptor interaction. Hyperglycemia, the fatty acid oxidation pathway, and the cytosolic storage of fatty acid and glucose/fatty acid derivatives are major inducers of reactive oxygen species. However, the presence of these species can be essential for physiological responses in the diabetic myocardium.
引用
收藏
页数:11
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共 123 条
[1]   Diabetic cardiomyopathy and reactive oxygen species (ROS) related parameters in male and female rats: A comparative study [J].
Akhileshwar V. ;
Patel S.P. ;
Katyare S.S. .
Indian Journal of Clinical Biochemistry, 2007, 22 (1) :84-90
[2]   PPARβ/δ activation blocks lipid-induced inflammatory pathways in mouse heart and human cardiac cells [J].
Alvarez-Guardia, David ;
Palomer, Xavier ;
Coll, Teresa ;
Serrano, Lucia ;
Rodriguez-Calvo, Ricardo ;
Davidson, Mercy M. ;
Merlos, Manuel ;
El Kochairi, Ilhem ;
Michalik, Liliane ;
Wahli, Walter ;
Vazquez-Carrera, Manuel .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR AND CELL BIOLOGY OF LIPIDS, 2011, 1811 (02) :59-67
[3]   Mitochondria as a source and target of lipid peroxidation products in healthy and diseased heart [J].
Anderson, Ethan J. ;
Katunga, Lalage A. ;
Willis, Monte S. .
CLINICAL AND EXPERIMENTAL PHARMACOLOGY AND PHYSIOLOGY, 2012, 39 (02) :179-193
[4]   Increased propensity for cell death in diabetic human heart is mediated by mitochondrial-dependent pathways [J].
Anderson, Ethan J. ;
Rodriguez, Evelio ;
Anderson, Curtis A. ;
Thayne, Kathleen ;
Chitwood, W. Randolph ;
Kypson, Alan P. .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2011, 300 (01) :H118-H124
[5]   Oxidative stress and myocardial injury in the diabetic heart [J].
Ansley, David M. ;
Wang, Baohua .
JOURNAL OF PATHOLOGY, 2013, 229 (02) :232-241
[6]   Emerging role of epigenetics and miRNA in diabetic cardiomyopathy [J].
Asrih, Mohamed ;
Steffens, Sabine .
CARDIOVASCULAR PATHOLOGY, 2013, 22 (02) :117-125
[7]   Chemokines in myocardial failure -: pathogenic importance and potential therapeutic targets [J].
Aukrust, P ;
Damås, JK ;
Gullestad, L ;
Froland, SS .
CLINICAL AND EXPERIMENTAL IMMUNOLOGY, 2001, 124 (03) :343-345
[8]   H2O2 alters rat cardiac sarcomere function and protein phosphorylation through redox signaling [J].
Avner, Benjamin S. ;
Hinken, Aaron C. ;
Yuan, Chao ;
Solaro, R. John .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2010, 299 (03) :H723-H730
[9]  
Baranowski M, 2007, J PHYSIOL PHARMACOL, V58, P57
[10]   Peroxisome proliferator-activated receptor β/δ as a therapeutic target for metabolic diseases [J].
Bedu, E ;
Wahli, W ;
Desvergne, A .
EXPERT OPINION ON THERAPEUTIC TARGETS, 2005, 9 (04) :861-873