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PMID: 15950380 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Effects of the novel TRPV1 receptor antagonist SB366791 in vitro and in vivo in the rat.

Neuroscience letters ·Vol. 385 ·No. 2 ·2005-09-09 ·Pages 137-42

Varga A, Németh J, Szabó A, McDougall JJ, Zhang C, Elekes K, Pintér E, Szolcsányi J, Helyes Z

Abstract

The TRPV1 capsaicin receptor is a non-selective cation channel localized in the cell membrane of a subset of primary sensory neurons and functions as an integrator molecule in nociceptive/inflammatory processes. The present paper characterizes the effects of SB366791, a novel TRPV1 antagonist, on capsaicin-evoked responses both in vitro and in vivo using rat models. SB366791 (100 and 500 nM) significantly inhibited capsaicin-evoked release of the pro-inflammatory sensory neuropeptide substance P from isolated tracheae, while it did not influence electrically induced neuropeptide release. It also decreased capsaicin-induced Ca2+ influx in cultured trigeminal ganglion cells in a concentration-dependent manner (0.5-10 microM) with an IC50 of 651.9 nM. In vivo 500 microg/kg i.p. dose of SB366791 significantly inhibited capsaicin-induced hypothermia, wiping movements and vasodilatation in the knee joint, while 2 mg/kg capsazepine was ineffective, its effect lasted for 1h. However, neither antagonist was able to inhibit capsaicin-evoked hypothermia in Balb/c mice. Based on these data SB366791 is a more selective and in vivo also a more potent TRPV1 receptor antagonist than capsazepine in the rat therefore, it may promote the assessment of the therapeutic utility of TRPV1 channel blockers.

MeSH Terms
Analgesics/pharmacology Anilides/pharmacology Animals Capsaicin/analogs & derivatives,antagonists & inhibitors,pharmacology Cells, Cultured Cinnamates/pharmacology Dose-Response Relationship, Drug Drug Interactions/physiology Hypothermia/drug therapy,physiopathology,prevention & control Ion Channels/antagonists & inhibitors,metabolism Male Mice Mice, Inbred BALB C Neurons, Afferent/drug effects,metabolism Nociceptors/drug effects,metabolism Pain/metabolism,physiopathology Peripheral Nervous System/drug effects,metabolism Rats Rats, Wistar Sensory Receptor Cells/drug effects,metabolism Substance P/metabolism TRPV Cation Channels Trigeminal Ganglion/drug effects,metabolism
Chemicals
Analgesics Anilides Cinnamates Ion Channels N-(3-methoxyphenyl)-4-chlorocinnamanilide TRPV Cation Channels Trpv1 protein, rat Substance P capsazepine Capsaicin
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Varga Angelika
Department of Pharmacology and Pharmacotherapy, Faculty of Medicine, University of Pécs, H-7643 Pécs, Szigeti u. 12, Hungary.
Németh József
Szabó Arpád
McDougall Jason J
Zhang Chunfen
Elekes Krisztián
Pintér Erika
Szolcsányi János
Helyes Zsuzsanna
Article Info
Journal
Neuroscience letters
Abbr.
Neurosci Lett
ISSN
0304-3940
Published
2005-09-09
Pages
137-42
Language
English
Region
Ireland
NLM ID
7600130
Subset
IM
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