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Methylene blue counteracts cyanide cardiotoxicity: Cellular mechanisms
Joseph Y. Cheung
, Jufang Wang
, Xue Qian Zhang
, Jianliang Song
, Dhanendra Tomar
,
Muniswamy Madesh
, Annick Judenherc-Haouzi
, Philippe Haouzi
Research output
:
Contribution to journal
›
Article
›
peer-review
25
Scopus citations
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Medicine and Dentistry
Calcium Ion
100%
Oxygen
33%
Homeostasis
33%
Methylthioninium Chloride
33%
Cyanide
33%
Potassium Current
33%
Depolarization
33%
Action Potential Amplitude
22%
Adenosine Triphosphate
22%
Repolarization
22%
Cardiotoxicity
22%
Myocyte
22%
Glucose
11%
Toxicity
11%
Superoxide
11%
Cellular Mechanism
11%
Calcium Channel
11%
Excitation
11%
Mitochondrial Membrane Potential
11%
Sodium Ion
11%
Muscle Contractility
11%
Smoke Inhalation
11%
Cyanide Poisoning
11%
Action Potential
11%
Ion Channel
11%
Cardiac Dysrhythmia
11%
Antidote
11%
Action Potential Duration
11%
Membrane Steady Potential
11%
Drug
11%
Chemotherapeutic Agent
11%
Cardiogenic Shock
11%
Excitation Contraction Coupling
11%
Sodium Cyanide
11%
APD50
11%
Adult
11%
Pharmacology, Toxicology and Pharmaceutical Science
Calcium Ion
100%
Oxygen
33%
Methylthioninium Chloride
33%
Cyanide
33%
Adenosine Triphosphate
22%
Cardiotoxicity
22%
Sodium Ion
11%
Toxicity
11%
Calcium Channel
11%
Cyanide Poisoning
11%
Glucose
11%
Superoxide
11%
Heart Arrhythmia
11%
Mouse
11%
Drug
11%
Ion Channel
11%
Cardiogenic Shock
11%
Antidote
11%
Sodium Cyanide
11%
Biochemistry, Genetics and Molecular Biology
Homeostasis
33%
Methylene Blue
33%
Depolarization
33%
Potassium Current
33%
Adenosine Triphosphate
22%
Oxidation Reduction Reaction
22%
Repolarization
22%
Action Potential Amplitude
22%
Glucose
11%
Ion Channel
11%
Inhalation
11%
Mitochondrial Membrane Potential
11%
Action Potential
11%
Action Potential Duration
11%
Mouse
11%
Membrane Steady Potential
11%
Muscle Contractility
11%
Excitation Contraction Coupling
11%
APD50
11%
Dose
11%
Neuroscience
Methylene Blue
33%
Potassium Current
33%
Adenosine Triphosphate
22%
Myocyte
22%
Action Potential
11%
Glucose
11%
Mitochondrial Membrane Potential
11%
Calcium Channel
11%
Cyanide Poisoning
11%
Ion Channel
11%
Resting Potential
11%
Antidote
11%
Excitation Contraction Coupling
11%