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Wiley InterScience

Journal of Neurochemistry

Journal of Neurochemistry

Volume 72 Issue 3, Pages 1117 - 1124

Published Online: 7 Jul 2008

Journal compilation © 2010 International Society for Neurochemistry



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Antidepressants Noncompetitively Inhibit Nicotinic Acetylcholine Receptor Function
John D Fryer & Ronald J Lukas
Division of Neurobiology, Barrow Neurological Institute, Phoenix, Arizona, U.S.A.
Address correspondence and reprint requests to Mr. J. D. Fryer at Division of Neurobiology, Barrow Neurological Institute, 350 W. Thomas Rd., Phoenix, AZ 85013, U.S.A.

Abbreviations used : carb, carbamylcholine ; EBDN, epibatidine ; I-Bgt, 125I-labeled α-bungarotoxin ; MLA, methyllycaconitine ; nAChR, nicotinic acetylcholine receptor ; nicotine, (—)-nicotine.

Copyright International Society for Neurochemistry
KEYWORDS
Nicotinic receptor • Acetylcholine • Fluoxetine • Sertraline • Paroxetine • Nefazodone • Venlafaxine • Depression

ABSTRACT

Abstract : Nicotinic acetylcholine receptors (nAChRs) are diverse members of the neurotransmitter-gated ion channel superfamily and play critical roles in chemical signaling throughout the nervous system. The present study establishes for the first time the acute functional effects of sertraline (Zoloft), paroxetine (Paxil), nefazodone (Serzone), and venlafaxine (Effexor) on two human and one chick nAChR subtype. This study also confirms previous findings of nAChR functional block by fluoxetine (Prozac). Function of human muscle-type nAChR (α1βγδ) in TE671/RD cells, human autonomic nAChR (α3β4α5 ±β2) in SH-SY5Y neuroblastoma cells, or chick V274T mutant α7-nAChR heterologously expressed in native nAChR-null SH-EP1 epithelial cells was measured using 86Rb+ efflux assays. Functional blockade of human muscle-type and autonomic nAChRs is produced by each of the drugs in the low to intermediate micromolar range, and functional blockade of chick V274T-α7-nAChR is produced in the intermediate to high micromolar range. Functional blockade is insurmountable by increasing agonist concentrations at each nAChR subtype tested for each of these drugs, suggesting noncompetitive inhibition of nAChR function. These studies open the possibilities that nAChR subtypes in the brain could be targets for therapeutic antidepressants and could play roles in clinical depression.


DIGITAL OBJECT IDENTIFIER (DOI)
10.1111/j.1471-4159.1999.721117.x About DOI

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