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Thapsigargin, a new calcium-dependent epithelial anion secretagogue
D J Brayden, M R Hanley,
Ole Thastrup
, A W Cuthbert
34
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Keyphrases
Secretagogue
100%
Calcium-dependent
100%
Anions
100%
Thapsigargin
100%
Bathing
28%
Calcium Influx
14%
Sesquiterpene Lactones
14%
Anion Channel
14%
Fura-2 Fluorescence
14%
Basal Values
14%
Human Colon Epithelial Cells
14%
Colonic Epithelium
14%
Anion Secretion
14%
K Channels
14%
Apical Membrane
14%
Cyclic Adenosine Monophosphate (cAMP)
14%
Fluorescence Measurement
14%
Kinins
14%
Eicosanoids
14%
Biochemistry, Genetics and Molecular Biology
Secretion (Process)
100%
Solution and Solubility
100%
Eicosanoid
50%
Fura-2
50%
Kinin
50%
Calcium Transport
50%
Electrochemical Gradient
50%
Cyclic Adenosine Monophosphate
50%
Potassium Channel
50%
Apical Membrane
50%
Neuroscience
Thapsigargin
100%
Apical Membrane
14%
Kinin
14%
Calcium Transport
14%
Sesquiterpene Lactone
14%
Behavior (Neuroscience)
14%
Epithelial Cells
14%
Potassium Channel
14%
Cyclic Adenosine Monophosphate
14%
Anion Channel
14%
Pharmacology, Toxicology and Pharmaceutical Science
Thapsigargin
100%
Potassium Channel
14%
Kinin
14%
Fura-2
14%
Effusion
14%
Cyclic AMP
14%
Icosanoid
14%
Anion Channel
14%
Sesquiterpene Lactone
14%