adenosine diphosphate has been researched along with safranine t in 7 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 1 (14.29) | 18.7374 |
1990's | 3 (42.86) | 18.2507 |
2000's | 2 (28.57) | 29.6817 |
2010's | 1 (14.29) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
---|---|
Bernardes, CF; Docampo, R; Gadelha, FR; Hoffmann, ME; Vercesi, AE | 1 |
Halangk, W; Letko, G | 1 |
Bracht, A; Ishii-Iwamoto, EL; Kelmer-Bracht, AM; Salgueiro-Pagadigorria, CL | 1 |
Bravo, C; Chávez, E; Moreno-Sánchez, R; Rodríguez, JS | 1 |
Alberici, LC; Cosso, RG; Degasperi, GR; Matsumoto, MY; Okanobo, H; Oliveira, HC; Velho, JA; Vercesi, AE | 1 |
Feldkamp, T; Kribben, A; Ostrowski, T; Roeser, NF; Weinberg, JM | 1 |
Chinopoulos, C; Starkov, AA; Ten, V; Thomas, B; Zhang, SF | 1 |
7 other study(ies) available for adenosine diphosphate and safranine t
Article | Year |
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Digitonin permeabilization does not affect mitochondrial function and allows the determination of the mitochondrial membrane potential of Trypanosoma cruzi in situ.
Topics: Adenosine Diphosphate; Animals; Calcium Chloride; Carbonyl Cyanide p-Trifluoromethoxyphenylhydrazone; Cell Membrane Permeability; Dequalinium; Digitonin; Gentian Violet; Intracellular Membranes; Membrane Potentials; Mitochondria; Nigericin; Oligomycins; Phenazines; Trypanosoma cruzi; Valinomycin | 1991 |
Effect of improved hydrogen supply on energy state, ureogenesis and gluconeogenesis in isolated hepatocytes.
Topics: Adenosine Diphosphate; Adenosine Triphosphate; Ammonia; Animals; Caprylates; Carbonyl Cyanide p-Trifluoromethoxyphenylhydrazone; Energy Metabolism; Gluconeogenesis; Hydrogen; Lactates; Lactic Acid; Liver; Ornithine; Phenazines; Urea | 1986 |
Effects of the nonsteroidal anti-inflammatory drug piroxicam on rat liver mitochondria.
Topics: Adenosine Diphosphate; Adenosine Triphosphatases; Analysis of Variance; Animals; Anti-Inflammatory Agents, Non-Steroidal; Binding Sites; Coloring Agents; Membrane Proteins; Mitochondria, Liver; Mitochondrial Swelling; Multienzyme Complexes; NAD; NADH Dehydrogenase; NADH, NADPH Oxidoreductases; Oxidoreductases; Oxygen Consumption; Phenazines; Piroxicam; Polarography; Rats; Rats, Wistar; Spectrophotometry, Ultraviolet; Uncoupling Agents | 1996 |
The mitochondrial membrane permeability transition induced by inorganic phosphate or inorganic arsenate. A comparative study.
Topics: Adenosine Diphosphate; Animals; Arsenates; Arsenazo III; Atractyloside; Calcium; Carbonyl Cyanide m-Chlorophenyl Hydrazone; Cyclosporine; Female; Intracellular Membranes; Kidney; Male; Membrane Potentials; Mitochondria; Oligomycins; Permeability; Phenazines; Phosphates; Rats; Spermine; Trifluoperazine | 1997 |
Statins induce calcium-dependent mitochondrial permeability transition.
Topics: Adenosine Diphosphate; Animals; Catalase; Chelating Agents; Cholesterol; Dithiothreitol; Egtazic Acid; Electrophysiology; Hindlimb; Hydroxymethylglutaryl-CoA Reductase Inhibitors; In Vitro Techniques; Lovastatin; Mice; Mice, Knockout; Mitochondria, Liver; Mitochondria, Muscle; Mitochondrial Swelling; Permeability; Phenazines; Proteins; Receptors, LDL; Sulfhydryl Compounds; Sulfhydryl Reagents | 2006 |
Alleviation of fatty acid and hypoxia-reoxygenation-induced proximal tubule deenergization by ADP/ATP carrier inhibition and glutamate.
Topics: Adenosine Diphosphate; Adenosine Triphosphate; Animals; Carrier Proteins; Dose-Response Relationship, Drug; Energy Metabolism; Fatty Acids; Female; Glutamic Acid; Hypoxia; Indicators and Reagents; Kidney Tubules, Proximal; Membrane Potential, Mitochondrial; Oleic Acid; Oxygen; Phenazines; Rabbits | 2007 |
Isolation and functional assessment of mitochondria from small amounts of mouse brain tissue.
Topics: Adenosine Diphosphate; Adenosine Triphosphate; Animals; Brain; Cell Fractionation; Dissection; Glycine; Membrane Potential, Mitochondrial; Mice; Mitochondria; Neostriatum; Phenazines; Spectrometry, Fluorescence; Xanthenes | 2011 |