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PMID: 16648189 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Paradoxical coronary microcirculatory constriction during ischemia: a synergic function for nitric oxide and endothelin.

American journal of physiology. Heart and circulatory physiology ·Vol. 291 ·No. 4 ·2006-10-00 ·Pages H1814-21

Kusmic C, Lazzerini G, Coceani F, Barsacchi R, L'Abbate A, Sambuceti G

Abstract

A paradoxical microcirculatory constriction has been observed in hearts of patients with ischemia, secondary to coronary stenosis. Here, using the isolated mouse heart (Langendorff), we examined the mechanism of this response, assuming involvement of nitric oxide (NO) and endothelin-1 (ET-1) systems. Perfusion pressure was maintained at 65 mmHg for 70 min (protocol 1), or it was reduced to 30 mmHg over two intervals, between the 20- and 40-min marks (protocol 2) or from the 20-min mark onward (protocol 3). In protocol 1, coronary resistance (CR) remained steady in untreated heart, whereas it progressively increased during treatment with the NO synthesis inhibitor N(G)-nitro-l-arginine methyl ester (L-NAME) (2.7-fold) or the ET(A) antagonist BQ-610 (2.8 fold). The ET(B) antagonist BQ-788 had instead no effect by itself but curtailed vasoconstriction to BQ-610. In protocol 2, hypotension raised CR by 2.2-fold. This response was blunted by reactive oxygen species (ROS) scavengers (mannitol and superoxide dismutase plus catalase) and was converted into vasodilation by l-NAME, BQ-610, or BQ-788. Restoration of normal pressure was followed by vasodilation and vasoconstriction, respectively, in untreated and treated preparations. In protocol 3, CR progressively increased with hypotension in the absence but not presence of L-NAME or BQ-610. We conclude that the coronary vasculature is normally relaxed by two concerted processes, a direct action of NO and ET-1 curtailing an ET(B2)-mediated tonic vasoconstriction through ET(A) activation. The negative feedback mechanism on ET(B2) subsides during hypotension, and the ensuing vasoconstriction is ascribed to ET-1 activating ET(A) and ET(B2) and reactive nitrogen oxide species originating from ROS-NO interaction.

MeSH Terms
Animals Antihypertensive Agents/pharmacology Blood Pressure/physiology Coronary Stenosis/complications,physiopathology Coronary Vessels/physiopathology Endothelins/physiology Enzyme Inhibitors/pharmacology Hemodynamics/physiology Hypotension/physiopathology Mice Mice, Inbred C57BL Microcirculation/physiopathology Models, Cardiovascular Myocardial Ischemia/etiology,physiopathology NG-Nitroarginine Methyl Ester/pharmacology Nitric Oxide/physiology Oligopeptides/pharmacology Piperidines/pharmacology Reactive Oxygen Species/metabolism Vasoconstriction/drug effects,physiology Vasodilation/drug effects,physiology Vasomotor System/physiology
Chemicals
Antihypertensive Agents Endothelins Enzyme Inhibitors Oligopeptides Piperidines Reactive Oxygen Species BQ 610 Nitric Oxide BQ 788 NG-Nitroarginine Methyl Ester
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Kusmic Claudia
Area della Ricerca CNR, Istituto di Fisiologia Clinica, Via Moruzzi, 1-56124 PISA, Italia. [email protected]
Lazzerini Guido
Coceani Flavio
Barsacchi Renata
L'Abbate Antonio
Sambuceti Gianmario
Article Info
Journal
American journal of physiology. Heart and circulatory physiology
Abbr.
Am J Physiol Heart Circ Physiol
ISSN
0363-6135
Published
2006-10-00
Epub
2006-00-28
Pages
H1814-21
Language
English
Region
United States
NLM ID
100901228
Subset
IM
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