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Journal Article
Jundishapur journal of natural pharmaceutical products, ISSN 1735-7780, 2016, Volume 11, Issue 2
Journal Article
Proceedings of the National Academy of Sciences - PNAS, ISSN 0027-8424, 11/2014, Volume 111, Issue 45, pp. 16017 - 16022
Journal Article
Free radical biology & medicine, ISSN 0891-5849, 12/2015, Volume 89, pp. 668 - 678
Mitochondrial oxidative damage contributes to a wide range of pathologies. One therapeutic strategy to treat these disorders is targeting antioxidants to... 
Mitochondria | MitoC | Mitochondrial targeting | Ascorbic acid | Lipid peroxidation | MitoPerox | Lipophilic cation | MitoPerox MitoC | Biochemistry & Molecular Biology | Endocrinology & Metabolism | Life Sciences & Biomedicine | Science & Technology | Antioxidants - chemistry | Oxidation-Reduction | Rats, Wistar | Mitochondria, Liver - metabolism | Rats | Antioxidants - pharmacology | Chromatography, High Pressure Liquid | Mitochondria, Liver - drug effects | Animals | Ascorbic Acid - pharmacology | Ascorbic Acid - chemistry | Female | Oxidative Stress - drug effects | Drug Delivery Systems - methods | Antioxidants | Superoxide | Mitochondrial DNA | Thioredoxin | Oxidases | Unsaturated fatty acids | Acetic acid | Organic acids | Index Medicus | AO, ascorbate oxidase | RET, reverse electron transport | GSH, glutathione | XO, xanthine oxidase | RLM, rat liver mitochondria | FCS, foetal calf serum | Δψm, mitochondrial membrane potential | FCCP, carbonylcyanide p-(trifluoromethoxy)phenylhydrazone | MitoC, mitochondria-targeted ascorbate | ROS, reactive oxygen species | LAH, linoleic acid hydroperoxide | DTPA, diethylenetriaminepenta-acetic acid | ACR, accumulation ratio | AFR, ascorbyl free radical | MitoDHA, mitochondria-targeted dehydroascorbate | TBARS, thiobarbituric acid reactive species | TPMP, methyltriphenylphosphonium | DHA, dehydroascorbic acid | TPP, triphenylphosphonium | RP-HPLC, reverse-phase HPLC | TFA, trifluoroacetic acid
Journal Article
Science (American Association for the Advancement of Science), ISSN 1095-9203, 06/2013, Volume 340, Issue 6140, pp. 1567 - 1570
Journal Article
PloS one, ISSN 1932-6203, 06/2014, Volume 9, Issue 6, pp. e100525 - e100525
Metformin is a widely prescribed drug for the treatment of type 2 diabetes. Previous studies have demonstrated in vitro that metformin specifically inhibits... 
COMPLEX I | OXIDATIVE CAPACITY | RESPIRATORY-CHAIN | LIVER-MITOCHONDRIA | MECHANISM | GLUCOSE-METABOLISM | INSULIN ACTION | IN-VIVO | EXERCISE | DIET-FED RATS | Science & Technology - Other Topics | Multidisciplinary Sciences | Science & Technology | Diabetes Mellitus, Experimental - drug therapy | Mitochondria, Muscle - pathology | Humans | Mitochondria, Muscle - metabolism | Body Weight - drug effects | Rats | Male | Mitochondria - drug effects | Obesity - metabolism | Rats, Zucker | Insulin - metabolism | Animals | Muscle, Skeletal - drug effects | Oxidation-Reduction - drug effects | Diabetes Mellitus, Experimental - pathology | Diabetes Mellitus, Type 2 - pathology | Metformin - administration & dosage | Diabetes Mellitus, Experimental - metabolism | Diabetes Mellitus, Type 2 - drug therapy | High resolution | Phosphorylation | Nuclear magnetic resonance--NMR | Pathogenesis | Glucose | Experiments | Magnetic resonance spectroscopy | Electron transport chain | Engineering | Mitochondria | Exercise | Rodents | Fitness training programs | Genotypes | Biomedical engineering | Spectroscopy | Oxygen | Diabetes mellitus | Respirometry | Magnetic resonance | Muscles | Oxygen consumption | Metabolism | Insulin | Skeletal muscle | Musculoskeletal system | In vivo methods and tests | Diabetes | Metformin | Electron transport | Index Medicus | Nuclear magnetic resonance | NMR
Journal Article
Toxicology in vitro, ISSN 0887-2333, 04/2016, Volume 32, pp. 320 - 332
The conformation of adenine nucleotide translocase (ANT) has a profound impact in opening the mitochondrial permeability transition pore (MPTP) in the inner... 
Tl | Adenine nucleotide translocase conformation | Mitochondrial permeability transition | Rat liver mitochondria | Ca2 | Mitochondrial swelling | Life Sciences & Biomedicine | Toxicology | Science & Technology
Journal Article
Biochemical journal, ISSN 0264-6021, 08/2010, Volume 430, Issue 1, pp. 49 - 59
The S-nitrosation of mitochondrial proteins as a consequence of NO metabolism is of physiological and pathological significance. We previously developed a... 
S-nitrosation | Mitochondria | Redox signalling | Difference in gel electrophoresis (DIGE) | Nitric oxide (NO) | S-nitrosylation | Life Sciences & Biomedicine | Biochemistry & Molecular Biology | Science & Technology | Oxidation-Reduction | Mice, Inbred C57BL | Rats | Electrophoresis, Gel, Two-Dimensional | Male | Myocardium - pathology | S-Nitrosothiols - metabolism | Myocardial Reperfusion Injury - metabolism | Mitochondrial Proteins - pharmacology | Myocardial Reperfusion Injury - pathology | Animals | Mitochondrial Proteins - metabolism | Myocardium - metabolism | Membrane Potential, Mitochondrial | Proteomics | Superoxides - metabolism | Mice | In Vitro Techniques | Mitochondria - physiology | Index Medicus | BVA, biological variance analysis | nitric oxide (NO) | AR, area at risk | RHM, rat heart mitochondria | SA, standardized abundance | DIGE, difference in gel electrophoresis | GSNO, S-nitrosoglutathione | SNO-DIGE, S-nitrosothiol difference in gel electrophoresis | DTT, dithiothreitol | R, ischaemia | redox signalling | RLM, rat liver mitochondria | 2D, two-dimensional | difference in gel electrophoresis (DIGE) | Cy3, indocarbocyanine | ROS, reactive oxygen species | reperfusion | PrSNO, protein S-nitrosothiol | MitoNAP, mito-N-acetylpenicillamine | Cy5, indodicarbocyanine | LAD, left anterior descending coronary artery | NEM, N-ethylmaleimide | LV, left ventricle | SNAP, S-nitroso-N-acetylpenicillamine | mitochondria | MitoSNO, mitochondria-targeted S-nitrosothiol | α-KGDH, α-ketoglutarate dehydrogenase | TPP, triphenylphosphonium | NIH, National Institutes for Health | ALDH2, aldehyde dehydrogenase | MALDI–TOF-TOF, matrix-assisted laser-desorption ionization–time-of-flight time-of-flight
Journal Article