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KCNQ4 channel activation by BMS-204352 and retigabine
Rikke Louise K. Schrøder,
Thomas Jespersen
, P Christophersen, D Strøbaek, B S Jensen,
S P Olesen
Physiology of circulation, kidney and lung
112
Citationer (Scopus)
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Keyphrases
Channel Activation
100%
Retigabine
100%
BMS-204352
100%
KCNQ4
100%
KCNQ2
33%
Potassium Channel
33%
Disease-related
16%
HEK293 Cells
16%
Neuropathic Pain
16%
Drug Candidates
16%
Linopirdine
16%
Disease Treatment
16%
Cellular Excitability
16%
Neurodegeneration
16%
Epilepsy Treatment
16%
Maximum Current
16%
Clinical Trials
16%
Epilepsy
16%
M-current
16%
Beta-blockers
16%
Potassium Channel Openers
16%
Deactivation Kinetics
16%
Negative Potential
16%
Concentration-dependent
16%
Stroke Treatment
16%
Activation Curve
16%
KCNQ3
16%
Potential Drugs
16%
Protective Behavior
16%
Induced Activation
16%
Pharmacology, Toxicology and Pharmaceutical Science
Retigabine
100%
Potassium Channel KCNQ4
100%
Potassium Channel
40%
Nerve Degeneration
20%
Cerebrovascular Accident
20%
Diseases
20%
Potassium Channel Stimulating Agent
20%
Linopirdine
20%
Neuropathic Pain
20%
Clinical Trial
20%