scholarly article | Q13442814 |
P6179 | Dimensions Publication ID | 1009955207 |
P356 | DOI | 10.1023/A:1023475022025 |
P698 | PubMed publication ID | 12841358 |
P5875 | ResearchGate publication ID | 10678767 |
P50 | author | António J. Moreno | Q43429067 |
Raquel Seiça | Q47503991 | ||
Carlos M. Palmeira | Q47503993 | ||
Maria Sancha Santos | Q59570366 | ||
Dario L Santos | Q59666439 | ||
P2093 | author name string | José Dias | |
José Mesquita | |||
P2860 | cites work | Hydroperoxide metabolism in mammalian organs | Q29614205 |
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Role of oxidative stress in development of complications in diabetes | Q37681089 | ||
Free radicals and ischemic tissue injury | Q37920254 | ||
The participation of coenzyme Q in free radical production and antioxidation | Q37936919 | ||
Lipids of mitochondria | Q38148540 | ||
Free radicals and diabetes | Q39578509 | ||
The development of mitochondrial medicine | Q40437237 | ||
The diabetic heart is more sensitive to ischemic injury | Q41526748 | ||
Controversies on the sensitivity of the diabetic heart to ischemic injury: the sensitivity of the diabetic heart to ischemic injury is decreased | Q41526759 | ||
Higher efficiency of the liver phosphorylative system in diabetic Goto-Kakizaki (GK) rats. | Q41689682 | ||
Decreased susceptibility to lipid peroxidation of Goto-Kakizaki rats: relationship to mitochondrial antioxidant capacity. | Q41692462 | ||
Glucose autoxidation and protein modification. The potential role of 'autoxidative glycosylation' in diabetes | Q42098319 | ||
Oxidative Damage, Plasma Antioxidant Capacity, and Glucemic Control in Elderly NIDDM Patients | Q42454203 | ||
Determination of serum proteins by means of the biuret reaction | Q43501226 | ||
Coenzyme Q and its therapeutic use | Q43565857 | ||
Brain and liver mitochondria isolated from diabetic Goto-Kakizaki rats show different susceptibility to induced oxidative stress. | Q43652401 | ||
The triterpene celastrol as a very potent inhibitor of lipid peroxidation in mitochondria | Q44944429 | ||
Antioxidant effects of ubiquinones in microsomes and mitochondria are mediated by tocopherol recycling | Q46229565 | ||
Study on lipid peroxidation potential in different tissues induced by ascorbate-Fe2+: possible factors involved in their differential susceptibility | Q48488951 | ||
Electrophoretic evidence for the impairment of complexes of the respiratory chain during iron/ascorbate induced peroxidation in isolated rat liver mitochondria | Q50757375 | ||
Microsomal lipid peroxidation | Q67358293 | ||
A fluorometric method for determination of oxidized and reduced glutathione in tissues | Q67805316 | ||
Permeability of inner mitochondrial membrane and oxidative stress | Q68463494 | ||
The role of lipid peroxidation in the induction of cation transport in rat liver mitochondria. The antioxidant effect of oligomycin and dicyclohexylcarbodiimide | Q70148613 | ||
Inhibition of lipid peroxidation by ubiquinol in submitochondrial particles in the absence of vitamin E | Q70221308 | ||
Decreased susceptibility of liver mitochondria from diabetic rats to oxidative damage and associated increase in alpha-tocopherol | Q70613244 | ||
Simultaneous determination of reduced and oxidized ubiquinones | Q71365841 | ||
Ubiquinone-dependent recycling of vitamin E radicals by superoxide | Q71557737 | ||
Vitamin E in plasma and platelets of human diabetic patients and control subjects | Q71699185 | ||
The effect of oxygen radicals metabolites and vitamin E on glycosylation of proteins | Q73024298 | ||
Diabetes rapidly induces contractile dysfunctions in isolated ventricular myocytes | Q73086114 | ||
A radical approach to the pathogenesis of diabetic complications | Q73120107 | ||
The molecular genetics of non-insulin-dependent diabetes mellitus | Q73170489 | ||
Deficit of coenzyme Q in heart and liver mitochondria of rats with streptozotocin-induced diabetes | Q73175643 | ||
Effects of vitamin E and selenium on antioxidant defense in rat heart | Q73669133 | ||
The glutathione levels are reduced in Goto-Kakizaki rat retina, but are not influenced by aminoguanidine treatment | Q74446986 | ||
Electron transport-linked ubiquinone-dependent recycling of alpha-tocopherol inhibits autooxidation of mitochondrial membranes | Q74547741 | ||
Rapid progression of cardiomyopathy in mitochondrial diabetes | Q74618948 | ||
Role of oxidative stress in diabetic complications: a new perspective on an old paradigm | Q77804864 | ||
Mitochondrial damage induced by conditions of oxidative stress | Q77814514 | ||
P433 | issue | 1-2 | |
P921 | main subject | mitochondrion | Q39572 |
P304 | page(s) | 163-170 | |
P577 | publication date | 2003-04-01 | |
P1433 | published in | Molecular and Cellular Biochemistry | Q1573176 |
P1476 | title | Diabetes and mitochondrial oxidative stress: a study using heart mitochondria from the diabetic Goto-Kakizaki rat. | |
P478 | volume | 246 |
Q46471274 | Altered Mitochondrial Anatomy of Trigeminal Ganglia Neurons in Diabetes. |
Q84773210 | Analysis of the structural and mechanistic factors in antioxidants that preserve mitochondrial function and confer cytoprotection |
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Q90665022 | Bioenergetic functions in subpopulations of heart mitochondria are preserved in a non-obese type 2 diabetes rat model (Goto-Kakizaki) |
Q55049902 | Calcium Signaling in the Ventricular Myocardium of the Goto-Kakizaki Type 2 Diabetic Rat. |
Q47950327 | Cardiac mitochondrial damage and biogenesis in a chronic model of type 1 diabetes |
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Q36908640 | Chromium supplementation improves glucose tolerance in diabetic Goto-Kakizaki rats |
Q23912644 | Diabetic cardiomyopathy-associated dysfunction in spatially distinct mitochondrial subpopulations |
Q28395852 | Diabetic cardiomyopathy: signaling defects and therapeutic approaches |
Q91027944 | Diastolic dysfunction is initiated by cardiomyocyte impairment ahead of endothelial dysfunction due to increased oxidative stress and inflammation in an experimental prediabetes model |
Q21246036 | Exercise training enhanced myocardial endothelial nitric oxide synthase (eNOS) function in diabetic Goto-Kakizaki (GK) rats |
Q86291090 | Extracts of passion fruit peel and seed of Passiflora edulis (Passifloraceae) attenuate oxidative stress in diabetic rats |
Q35683182 | Glutamine Reduces the Apoptosis of H9C2 Cells Treated with High-Glucose and Reperfusion through an Oxidation-Related Mechanism |
Q35209988 | Glutathione and apoptosis |
Q35048593 | Impaired mitochondrial respiratory functions and oxidative stress in streptozotocin-induced diabetic rats. |
Q45169159 | Increased efflux of glutathione conjugate in acutely diabetic cardiomyocytes |
Q27001165 | Interplay of oxidative, nitrosative/nitrative stress, inflammation, cell death and autophagy in diabetic cardiomyopathy |
Q47940126 | Liver mitochondrial membrane fluidity at early development of diabetes and its correlation with the respiration |
Q24633336 | Mitochondria in the diabetic heart |
Q36442633 | Mitochondrial glutathione transport: physiological, pathological and toxicological implications. |
Q33649876 | Mitochondrial glutathione, a key survival antioxidant |
Q51911145 | Mitochondrial membrane fluidity, potential, and calcium transients in the myocardium from acute diabetic rats. |
Q42520867 | Modulation of mitochondrial glutathione status and cellular energetics in primary cultures of proximal tubular cells from remnant kidney of uninephrectomized rats |
Q54578923 | Myocardial preconditioning against ischemia-reperfusion injury is abolished in Zucker obese rats with insulin resistance. |
Q59800367 | Of mice and men: models and mechanisms of diabetic cardiomyopathy |
Q33597948 | Proteome, phosphoproteome, and hydroxyproteome of liver mitochondria in diabetic rats at early pathogenic stages |
Q30939059 | Reconstruction and functional characterization of the human mitochondrial metabolic network based on proteomic and biochemical data |
Q37097807 | Role of mitochondrial dysfunction in insulin resistance |
Q38087253 | Structural changes in the myocardium during diabetes-induced cardiomyopathy |
Q37786972 | The importance of mitochondria in age-related and inherited eye disorders. |
Q28391746 | Therapeutic inhibition of mitochondrial reactive oxygen species with mito-TEMPO reduces diabetic cardiomyopathy |
Q35564129 | Updating experimental models of diabetic cardiomyopathy |
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