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PMID: 10711361 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Evidence against potassium as an endothelium-derived hyperpolarizing factor in rat mesenteric small arteries.

British journal of pharmacology ·Vol. 129 ·No. 3 ·2000-02-00 ·Pages 605-11

Lacy PS, Pilkington G, Hanvesakul R, Fish HJ, Boyle JP, Thurston H

Abstract

1. Endothelium-derived hyperpolarizing factor (EDHF) has recently been identified as potassium released from endothelial cells into the myo-endothelial space. The present study was designed to test this hypothesis. 2. In rat small mesenteric arteries, mounted in a wire myograph, relaxation to acetylcholine or potassium was not significantly changed following incubation with oxadiazolo-quinoxalin-1-one (ODQ, 4 microM) and indomethacin (10 microM, n = 9). 3. Maximal relaxations to acetylcholine occurred in all arteries, were maintained and were significantly greater (P < 0.01, n = 9) than the transient relaxations to potassium, which only occurred in 30-40% of vessels. 4. Removal of the vascular endothelium abolished relaxant responses both to potassium and acetylcholine (P < 0.005, n = 9). 5. Compared with responses in 5.5 mM potassium PSS, relaxation responses to added potassium in arteries maintained in 1.5 mM potassium PSS were more marked and were not dependent on the presence of an intact endothelium (n = 8). 6. Incubation with BaCl2 (50 microM) significantly inhibited the maximal relaxant response to potassium in the presence of an intact endothelium in 5.5 mM potassium PSS (P < 0.05, n = 4), but had no effect on relaxation of de-endothelialized preparations in 1.5 mM potassium PSS (n = 5). 7. Treatment with ouabain (0.1 mM) abolished the relaxant response to potassium in 1.5 mM potassium PSS (P < 0.001, n = 9), but only partly inhibited the maximal relaxant response to acetylcholine in 5.5 mM potassium PSS (P < 0.01, n = 5). 8. These data show that at physiological concentrations of potassium an intact endothelium is necessary for potassium-induced relaxation in rat mesenteric arteries. Furthermore, the response to potassium is clearly different to that from acetylcholine, indicating that potassium does not mimic EDHF released by acetylcholine in these arteries.

MeSH Terms
Acetylcholine/pharmacology Animals Barium Compounds/pharmacology Chlorides/pharmacology Cyclooxygenase Inhibitors/pharmacology Endothelium, Vascular/physiology Enzyme Inhibitors/pharmacology Indomethacin/pharmacology Isometric Contraction/drug effects Male Mesenteric Arteries/cytology,drug effects,physiology Nitric Oxide Synthase/antagonists & inhibitors Nitric Oxide Synthase Type III Nitroarginine/pharmacology Nitroprusside/pharmacology Oxadiazoles/pharmacology Potassium/physiology Quinoxalines/pharmacology Rats Rats, Wistar Vasodilation/drug effects,physiology Vasodilator Agents/pharmacology
Chemicals
1H-(1,2,4)oxadiazolo(4,3-a)quinoxalin-1-one Barium Compounds Chlorides Cyclooxygenase Inhibitors Enzyme Inhibitors Oxadiazoles Quinoxalines Vasodilator Agents barium chloride Nitroprusside Nitroarginine Nitric Oxide Synthase Nitric Oxide Synthase Type III Nos3 protein, rat Acetylcholine Potassium Indomethacin
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Lacy P S
Department of Medicine, Leicester Royal Infirmary. psl2@Leicester.ac.uk
Pilkington G
Hanvesakul R
Fish H J
Boyle J P
Thurston H
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Article Info
Journal
British journal of pharmacology
Abbr.
Br J Pharmacol
ISSN
0007-1188
Published
2000-02-00
Pages
605-11
Language
English
Region
England
NLM ID
7502536
PMCID
PMC1571860
Subset
IM
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