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PMID: 11120759 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Hydrogen peroxide is an endothelium-derived hyperpolarizing factor in mice.

The Journal of clinical investigation ·Vol. 106 ·No. 12 ·2000-12-00 ·Pages 1521-30

Matoba T, Shimokawa H, Nakashima M, Hirakawa Y, Mukai Y, Hirano K, Kanaide H, Takeshita A

Abstract

The endothelium plays an important role in maintaining vascular homeostasis by synthesizing and releasing several endothelium-derived relaxing factors, such as prostacyclin, nitric oxide (NO), and the previously unidentified endothelium-derived hyperpolarizing factor (EDHF). In this study, we examined our hypothesis that hydrogen peroxide (H(2)O(2)) derived from endothelial NO synthase (eNOS) is an EDHF. EDHF-mediated relaxation and hyperpolarization in response to acetylcholine (ACh) were markedly attenuated in small mesenteric arteries from eNOS knockout (eNOS-KO) mice. In the eNOS-KO mice, vasodilating and hyperpolarizing responses of vascular smooth muscle per se were fairly well preserved, as was the increase in intracellular calcium in endothelial cells in response to ACh. Antihypertensive treatment with hydralazine failed to improve the EDHF-mediated relaxation. Catalase, which dismutates H(2)O(2) to form water and oxygen, inhibited EDHF-mediated relaxation and hyperpolarization, but it did not affect endothelium-independent relaxation following treatment with the K(+) channel opener levcromakalim. Exogenous H(2)O(2) elicited similar relaxation and hyperpolarization in endothelium-stripped arteries. Finally, laser confocal microscopic examination with peroxide-sensitive fluorescence dye demonstrated that the endothelium produced H(2)O(2) upon stimulation by ACh and that the H(2)O(2) production was markedly reduced in eNOS-KO mice. These results indicate that H(2)O(2) is an EDHF in mouse small mesenteric arteries and that eNOS is a major source of the reactive oxygen species.

MeSH Terms
Acetylcholine/pharmacology Animals Antihypertensive Agents/pharmacology Biological Factors/antagonists & inhibitors,metabolism Calcium/metabolism Catalase/pharmacology Endothelium, Vascular/drug effects,metabolism Gene Deletion Hydralazine/pharmacology Hydrogen Peroxide/antagonists & inhibitors,metabolism Membrane Potentials/drug effects Mesenteric Arteries/drug effects,physiology Mice Mice, Inbred C57BL Mice, Knockout Microscopy, Fluorescence Muscle, Smooth, Vascular/drug effects,metabolism Nitric Oxide Synthase/genetics,metabolism Nitric Oxide Synthase Type II Nitric Oxide Synthase Type III Potassium Channel Blockers Potassium Channels/metabolism Reactive Oxygen Species/metabolism Vasodilation/drug effects
Chemicals
Antihypertensive Agents Biological Factors Potassium Channel Blockers Potassium Channels Reactive Oxygen Species endothelium-dependent hyperpolarization factor Hydralazine Hydrogen Peroxide Catalase Nitric Oxide Synthase Nitric Oxide Synthase Type II Nitric Oxide Synthase Type III Nos3 protein, mouse Acetylcholine Calcium
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Matoba T
Department of Cardiovascular Medicine, Kyushu University Graduate School of Medical Sciences, Fukuoka, Japan.
Shimokawa H
Nakashima M
Hirakawa Y
Mukai Y
Hirano K
Kanaide H
Takeshita A
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Article Info
Journal
The Journal of clinical investigation
Abbr.
J Clin Invest
ISSN
0021-9738
Published
2000-12-00
Pages
1521-30
Language
English
Region
United States
NLM ID
7802877
PMCID
PMC387255
Subset
IM
Corrections
CommentIn
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