Activation and Inhibition of Mouse Muscle and Neuronal Nicotinic Acetylcholine Receptors Expressed in Xenopus Oocytes
Journal Article
Overview
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Acetylcholine
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Alkaloids
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Alkaloids - Dihydro-beta-Erythroidine
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Amines - Decamethonium Compounds
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Amines - Hexamethonium
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Animal Population Groups - Mice, Transgenic
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Animals
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Azocines
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Benzazepines
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Benzazepines - Varenicline
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Biological Science Disciplines - Electrophysiology
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Carrier Proteins - Receptors, Nicotinic
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Cells - Oocytes
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Gene Expression
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Genitalia - Oocytes
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Heterocyclic Compounds, 4 or More Rings - Dihydro-beta-Erythroidine
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Humans
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Hydrocarbons, Cyclic - Mecamylamine
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Membrane Proteins - Receptors, Nicotinic
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Membrane Proteins - Receptors, Nicotinic
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Mice
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Mice - Mice, Transgenic
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Molecular Mechanisms of Pharmacological Action - Nicotinic Antagonists
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Muscle, Striated - Muscle, Skeletal
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Musculoskeletal System - Muscle, Skeletal
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Onium Compounds - Decamethonium Compounds
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Onium Compounds - Hexamethonium
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Pharmacological Phenomena - Dose-Response Relationship, Drug
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Physiological Effects of Drugs - Nicotinic Antagonists
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Physiology - Electrophysiology
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Polycyclic Compounds - Mecamylamine
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Quinolizines
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Quinoxalines
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Quinoxalines - Varenicline
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Rats
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Receptors, Cell Surface - Receptors, Nicotinic
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Receptors, Cholinergic - Receptors, Nicotinic
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Toxicological Phenomena - Dose-Response Relationship, Drug
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Xenopus laevis
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Date in CU Experts
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September 9, 2013 9:27 AM
Full Author List
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Papke RL; Wecker L; Stitzel JA
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