Journal of Pharmacological Sciences
Online ISSN : 1347-8648
Print ISSN : 1347-8613
ISSN-L : 1347-8613
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Effects of Nicorandil on the cAMP-Dependent Cl Current in Guinea-Pig Ventricular Cells
Nami NishimuraYoshie ReienAkio MatsumotoTakehiko OguraYuuichi MiyataKazumasa SuzukiYuji NakazatoHiroyuki DaidaHaruaki Nakaya
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2010 年 112 巻 4 号 p. 415-423

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In guinea-pig cardiomyocytes, a cAMP-dependent Cl current (ICl,cAMP) flows through a cardiac isoform of the cystic fibrosis transmembrane conductance regulator (CFTR), which belongs to a family of the ATP-binding cassette (ABC) proteins. Although several K+-channel openers and sulfonylurea ATP-sensitive K+ (KATP)–channel blockers reportedly inhibit ICl,cAMP, effects of nicorandil on the Cl current have not been evaluated. This study was conducted to examine the effects of nicorandil on ICl,cAMP in isolated guinea-pig ventricular cells using patch clamp techniques. Nicorandil in concentrations higher than 300 μM enhanced the ICl,cAMP preactivated by 0.1 μM isoproterenol. The isoproterenol-induced ICl,cAMP was inhibited by 100 μM glibenclamide, but not by 100 μM pinacidil. SNAP (S-nitroso-N-acetyl-D,L-penicillamine, 10 μM), a nitric oxide (NO) donor, similarly enhanced the isoproterenol-induced ICl,cAMP. However, SG-86, a denitrated metabolite possessing K+ channel–opening action, failed to enhance the Cl current. When the ICl,cAMP was activated by 3-isobutyl-1-methylxanthine (IBMX, 30 μM), either nicorandil or SNAP failed to enhance the isoproterenol-induced ICl,cAMP. Thus, nicorandil enhances ICl,cAMP in guinea-pig cardiomyocytes through an increase in intracellular cGMP, although direct modulation of ICl,cAMP by NO cannot be completely excluded.
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© The Japanese Pharmacological Society 2010
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