Keyphrases
Mitochondria
100%
Myocytes
100%
Doxorubicin
100%
Dexrazoxane
100%
ICRF-187
100%
Epifluorescence Microscopy
22%
Iron-based
22%
Microscopic Analysis
11%
Oxidative Stress
11%
Cardiotoxicity
11%
Antioxidant
11%
Heart muscle
11%
Oxidative Damage
11%
Depolarization
11%
Image Analysis Technique
11%
Chelates
11%
Hydroxyl Radical
11%
Induced Damage
11%
Radical-mediated
11%
Mitochondrial Membrane Potential
11%
Semiquinone
11%
MitoTracker
11%
Neonatal Rat Cardiomyocytes
11%
Induced Oxidation
11%
Mitochondria-associated Membranes
11%
Propidium Iodide Staining
11%
Annexin V-FITC
11%
Mitochondrial Damage
11%
Reductive Activation
11%
Oxygen Radical Damage
11%
Dichlorofluorescin
11%
JC-1
11%
Cardioprotective Agents
11%
Ratiometric Dye
11%
Membrane Potential Sensing
11%
Medicine and Dentistry
Mitochondrion
100%
Dexrazoxane
100%
Cardiac Muscle Cell
100%
Doxorubicin
100%
Iron
55%
Image Analysis
11%
Oxidative Stress
11%
Oxygen Radical
11%
Antioxidant
11%
Hydroxyl Radical
11%
Lipocortin 5
11%
Epifluorescence Microscopy
11%
Mitochondrial Membrane
11%
Mitochondrial Membrane Potential
11%
Semiquinone
11%
Metabolite
11%
Propidium Iodide
11%
Fluorescein Isothiocyanate
11%
Biochemistry, Genetics and Molecular Biology
Mitochondrion
100%
Cardiac Muscle Cell
100%
Dexrazoxane
100%
Doxorubicin
100%
Metabolite
11%
Semiquinone
11%
Oxidative Stress
11%
Mitochondrial Membrane
11%
Mitochondrial Membrane Potential
11%
Propidium Iodide
11%
Outer Mitochondrial Membrane
11%
Lipocortin
11%
Neuroscience
Mitochondrion
100%
Myocyte
100%
Dexrazoxane
100%
Doxorubicin
100%
Antioxidant
11%
Staining Technique
11%
Propidium Iodide
11%
Oxidative Stress
11%
Mitochondrial Membrane
11%
Lipocortin 5
11%
Mitochondrial Membrane Potential
11%
Pharmacology, Toxicology and Pharmaceutical Science
Doxorubicin
100%
Razoxane
100%
Iron
55%
Propidium Iodide
11%
Fluorescein Isothiocyanate
11%
Lipocortin 5
11%
Oxygen Radical
11%
Semiquinone
11%
Antioxidant
11%
Hydroxyl Radical
11%