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Endocannabinoids and cannabinoid analogues block cardiac hKv1.5 channels in a cannabinoid receptor-independent manner
Author(s) -
Adriana Barana,
Irene Amorós,
Ricardo Caballero,
Ricardo Gómez,
Lourdes Osuna Almagro,
M. Pilar Lillo,
Cristina Blázquez,
Manuel Guzmán,
Eva Delpón,
Juan Tamargo
Publication year - 2009
Publication title -
cardiovascular research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.774
H-Index - 219
eISSN - 1755-3245
pISSN - 0008-6363
DOI - 10.1093/cvr/cvp284
Subject(s) - anandamide , endocannabinoid system , cannabinoid receptor , cannabinoid , cannabinoid receptor type 2 , arachidonic acid , chemistry , palmitoylethanolamide , pharmacology , medicine , endocrinology , receptor , biophysics , biochemistry , biology , agonist , enzyme
Endocannabinoids are synthesized from lipid precursors at the plasma membranes of virtually all cell types, including cardiac myocytes. Endocannabinoids can modulate neuronal and vascular ion channels through receptor-independent actions; however, their effects on cardiac K(+) channels are unknown. This study was undertaken to determine the receptor-independent effects of endocannabinoids such as anandamide (N-arachidonoylethanolamine, AEA), 2-arachidonoylglycerol (2-AG), and endocannabinoid-related compounds such as N-palmitoylethanolamine (PEA), N-oleoylethanolamine (OEA), the endogenous lipid lysophosphatidylinositol (LPI), and the fatty acids from which some of these compounds are endogenously synthesized, on human cardiac Kv1.5 channels, which generate the ultrarapid delayed rectifier current (I(Kur)).

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