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Arecoline inhibits intermediate-conductance calcium-activated potassium channels in human glioblastoma cell lines
Edmund Cheung So, Yan Ming Huang, Chung-Hsi Hsing, Yu Kai Liao, Sheng Nan Wu
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雜誌貢獻
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12
引文 斯高帕斯(Scopus)
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Biochemistry, Genetics and Molecular Biology
Conductance
100%
Arecoline
100%
Calcium-Activated Potassium Channel
100%
Electric Potential
21%
Mean Channel Closed Time
14%
Keratinocyte
14%
Voltage Clamp
7%
Current Clamp Technique
7%
Patch Clamp
7%
Potassium Current
7%
Ion Current
7%
Areca
7%
Dissociation Constant
7%
Whole Cell
7%
BK Channel
7%
Muscarinic Acetylcholine Receptor
7%
Neuroscience
Cell Line
100%
Intermediate Conductance Calcium Activated Potassium Channel
100%
Arecoline
100%
Keratinocyte
14%
In Vivo
7%
Voltage Clamp
7%
Potassium Current
7%
Muscarinic Acetylcholine Receptor
7%
Ion Channel
7%
Natural Product
7%
BK Channel
7%
Areca Nut
7%
Patch Clamp
7%
Pyrazole
7%
Pharmacology, Toxicology and Pharmaceutical Science
Glioblastoma
100%
Arecoline
100%
Intermediate Conductance Calcium Activated Potassium Channel
100%
Potassium Ion
21%
Calcium Ion
14%
Natural Product
7%
Areca
7%
Toxicological Effect
7%
Muscarinic Receptor
7%
Large Conductance Calcium Activated Potassium Channel
7%
Ion Channel
7%
Pyrazole
7%