Literature DB >> 12808352

Evidence for a differential cellular distribution of inward rectifier K channels in the rat isolated mesenteric artery.

G J Crane1, S D Walker, K A Dora, C J Garland.   

Abstract

The distribution of functionally active, inwardly rectifying K (K(IR)) channels was investigated in the rat small mesenteric artery using both freshly isolated smooth muscle and endothelial cells and small arterial segments. In Ca(2+)-free solution, endothelial cells displayed a K(IR) current with a maximum amplitude of 190 +/- 16 pA at -150 mV and sensitivity to block with 30 microM Ba(2+) (n = 7). In smooth muscle cells, outward K current was activated at around -47 +/- 3 mV, but there was no evidence of K(IR) current (n = 6). Furthermore, raising extracellular [K(+)] to either 60 or 140 mM, or applying the alpha(1)-adrenoceptor agonist phenylephrine (PE; 30 microM), failed to reveal an inwardly rectifying current in the smooth muscle cells, although PE did stimulate an iberiotoxin-sensitive outward K current (n = 4). Exogenous K(+) (10.8-16.8 mM) both relaxed and repolarized endothelium-denuded segments of the mesenteric artery contracted with PE. These effects were depressed by 100 microM ouabain but unaffected by either 30 microM BaCl(2) or 3 microM glibenclamide. These data suggest that functional, inwardly rectifying Ba(2+)-sensitive channels are restricted to the endothelial cell layer in the rat small mesenteric artery. Copyright 2003 S. Karger AG, Basel

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Year:  2003        PMID: 12808352     DOI: 10.1159/000070713

Source DB:  PubMed          Journal:  J Vasc Res        ISSN: 1018-1172            Impact factor:   1.934


  28 in total

1.  Spreading dilatation in rat mesenteric arteries associated with calcium-independent endothelial cell hyperpolarization.

Authors:  Hiromichi Takano; Kim A Dora; Michaela M Spitaler; Chris J Garland
Journal:  J Physiol       Date:  2004-02-13       Impact factor: 5.182

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3.  2-Aminoethoxydiphenyl borate blocks electrical coupling and inhibits voltage-gated K+ channels in guinea pig arteriole cells.

Authors:  Ke-Tao Ma; Bing-Cai Guan; Yu-Qin Yang; Alfred L Nuttall; Zhi-Gen Jiang
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4.  KIR channels function as electrical amplifiers in rat vascular smooth muscle.

Authors:  Pamela D Smith; Suzanne E Brett; Kevin D Luykenaar; Shaun L Sandow; Sean P Marrelli; Edward J Vigmond; Donald G Welsh
Journal:  J Physiol       Date:  2007-12-06       Impact factor: 5.182

Review 5.  Inward rectification and vascular function: as it was in the beginning.

Authors:  Caryl E Hill
Journal:  J Physiol       Date:  2008-02-07       Impact factor: 5.182

Review 6.  Vascular inward rectifier K+ channels as external K+ sensors in the control of cerebral blood flow.

Authors:  Thomas A Longden; Mark T Nelson
Journal:  Microcirculation       Date:  2015-04       Impact factor: 2.628

Review 7.  Smooth Muscle Ion Channels and Regulation of Vascular Tone in Resistance Arteries and Arterioles.

Authors:  Nathan R Tykocki; Erika M Boerman; William F Jackson
Journal:  Compr Physiol       Date:  2017-03-16       Impact factor: 9.090

Review 8.  Intercellular communication in the vascular wall: a modeling perspective.

Authors:  Sridevi Nagaraja; Adam Kapela; Nikolaos M Tsoukias
Journal:  Microcirculation       Date:  2012-07       Impact factor: 2.628

9.  A mathematical model of vasoreactivity in rat mesenteric arterioles: I. Myoendothelial communication.

Authors:  Adam Kapela; Anastasios Bezerianos; Nikolaos M Tsoukias
Journal:  Microcirculation       Date:  2009-11       Impact factor: 2.628

10.  High blood pressure associates with the remodelling of inward rectifier K+ channels in mice mesenteric vascular smooth muscle cells.

Authors:  Sendoa Tajada; Pilar Cidad; Alejandro Moreno-Domínguez; M Teresa Pérez-García; José R López-López
Journal:  J Physiol       Date:  2012-09-10       Impact factor: 5.182

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