Literature DB >> 16473954

Regional heterogeneity in acetylcholine-induced relaxation in rat vascular bed: role of calcium-activated K+ channels.

Rob H P Hilgers1, Joseph Todd, R Clinton Webb.   

Abstract

Ca+ -activated K+ -channels (KCa) regulate vasomotor tone via smooth muscle hyperpolarization and relaxation. The relative contribution of the endothelium-derived hyperpolarizing factor (EDHF)-mediated relaxation differs depending on vessel type and size. It is unknown whether these KCa channels are differentially distributed along the same vascular bed and hence have different roles in mediating the EDHF response. We therefore assessed the role of small- (SKCa), intermediate- (IKCa), and large-conductance (BKCa) channels in mediating acetylcholine-induced relaxations in both first- and fourth-order side branches of the rat superior mesenteric artery (MA1 and MA4, respectively). Two-millimeter segments of each MA were mounted in the wire myograph, incubated with Nomega-nitro-L-arginine methyl ester (L-NAME, 100 micromol/l) and indomethacin (10 micromol/l), and precontracted with phenylephrine (10 micromol/l). Cumulative concentration-response curves to ACh (0.001-10 micromol/l) were performed in the absence or presence of selective KCa channel antagonists. Apamin almost completely abolished these relaxations in MA4 but only partially blocked relaxations in MA1. The selective IKCa channel blocker 1-[(2-chlorophenyl) diphenylmethyl]-1H-pyrazole (TRAM-34) caused a significantly greater inhibition of the ACh-induced relaxation in MA4 compared with MA1. Iberiotoxin had no inhibitory effect in MA4 but blunted relaxation in MA1. Relative mRNA expression levels of SKCa (rSK1, rSK3, and rSK4 = rIK1) were significantly higher in MA4 compared with MA1. BKCa (rBKalpha1 and rBKbeta1) genes were similar in both MA1 and MA4. Our data demonstrate regional heterogeneity in SKCa and IKCa function and gene expression and stress the importance of these channels in smaller resistance-sized arteries, where the role of EDHF is more pronounced.

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Year:  2006        PMID: 16473954     DOI: 10.1152/ajpheart.01383.2005

Source DB:  PubMed          Journal:  Am J Physiol Heart Circ Physiol        ISSN: 0363-6135            Impact factor:   4.733


  25 in total

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Journal:  Pflugers Arch       Date:  2010-04-09       Impact factor: 3.657

2.  Amplification of endothelium-dependent vasodilatation in contracting human skeletal muscle: role of KIR channels.

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3.  Role of calcium-activated potassium channels in acetylcholine-induced vasodilation of rat retinal arterioles in vivo.

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Journal:  Naunyn Schmiedebergs Arch Pharmacol       Date:  2010-10-27       Impact factor: 3.000

Review 4.  Calcium-activated potassium channels and endothelial dysfunction: therapeutic options?

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5.  Caveolin-1 limits the contribution of BK(Ca) channel to EDHF-mediated arteriolar dilation: implications in diet-induced obesity.

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6.  SKA-31, an activator of Ca2+-activated K+ channels, improves cardiovascular function in aging.

Authors:  Cini Mathew John; Rayan Khaddaj Mallat; Ramesh C Mishra; Grace George; Vikrant Singh; Jeannine D Turnbull; Channakeshava S Umeshappa; Dylan J Kendrick; Taeyeob Kim; Fazlin M Fauzi; Frank Visser; Paul W M Fedak; Heike Wulff; Andrew P Braun
Journal:  Pharmacol Res       Date:  2019-11-07       Impact factor: 7.658

7.  Enalapril Normalizes Endothelium-Derived Hyperpolarizing Factor-Mediated Relaxation in Mesenteric Artery of Adult Hypertensive Rats Prenatally Exposed to Testosterone.

Authors:  Amar S More; Jay S Mishra; Gary D V Hankins; Chandra Yallampalli; Kunju Sathishkumar
Journal:  Biol Reprod       Date:  2015-05-13       Impact factor: 4.285

8.  Dietary soy modulates endothelium-dependent relaxation in aged male rats: Increased agonist-induced endothelium-derived hyperpolarising factor and basal nitric oxide activity.

Authors:  Greg A Knock; Katharina Mahn; Giovanni E Mann; Jeremy P T Ward; Philip I Aaronson
Journal:  Free Radic Biol Med       Date:  2006-05-23       Impact factor: 7.376

Review 9.  Vascular TRP channels: performing under pressure and going with the flow.

Authors:  David C Hill-Eubanks; Albert L Gonzales; Swapnil K Sonkusare; Mark T Nelson
Journal:  Physiology (Bethesda)       Date:  2014-09

10.  Role of in vivo vascular redox in resistance arteries.

Authors:  Rob H P Hilgers; Kumuda C Das
Journal:  Hypertension       Date:  2014-10-13       Impact factor: 10.190

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