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NO and PGI2 in coronary endothelial dysfunction in transgenic mice with dilated cardiomyopathy

  • Lukasz Drelicharz
    ,
  • Valery Kozlovski
    ,
  • Tomasz Skorka
    ,
  • Sylwia Heinze-Paluchowska
    ,
  • Andrzej Jasinski
    ,
  • Anna Gebska
*Corresponding author for this work
  • Jagiellonian University Medical College
    ,
  • The Henryk Niewodniczanski Institute of Nuclear Physics of the Polish Academy of Sciences
    ,
  • Cracow University of Technology
    ,
  • Brown University
Scholary Output:
Contribution to journal
Article
Peer-review

Abstract

Objective: The aim of the present work was to analyze coronary endothelial function in the transgenic mouse model of dilated cardiomyopathy (Tgαq*44 mice). Methods: Coronary vasodilatation, both NO-dependent (induced by bradykinin) and PGI2-dependent (induced by acetylcholine), was assessed in the isolated hearts of Tgαq*44 and FVB mice. Cardiac function was analyzed in vivo (MRI). Results: In Tgαq*44 mice at the age of 2-4 months cardiac function was preserved and there were no alterations in endothelial function. By contrast, in Tgαq*44 mice at the age of 14-16 months cardiac function was significantly impaired and NO, but not PGI2-dependent coronary function was altered. Interestingly, the basal level of PGI2 in coronary circulation increased fourfold as compared to FVB mice. Cardiac O2- production increased 1.5-fold and 3-fold in Tgαq*44 vs. FVB mice at the age of 2-6 and 14-16 months, respectively, and was inhibited by apocynin. Interestingly, inhibition of NADPH oxidase or NOS-3 normalized augmented PGI2 production in Tgαq*44 mice. There was also an increased expression of gp91phox in Tgαq*44 vs. FVB hearts, without evident alterations in the expression of COX-1, COX-2, NOS-3 and PGI2-synthase. Conclusions: In the mouse model of dilated cardiomyopathy, endothelial dysfunction in coronary circulation is present in the late but not the early stage of heart failure pathology and is characterized by a decrease in NO bioavailability and a compensatory increase in PGI2. Both the decrease in NO activity and the increase in PGI2 activity may result from excessive O2- production by cardiac NADPH oxidase in Tgαq*44 hearts.

Publication Information

Output type

Scholary Output:
Contribution to journal
Article
Peer-review

Original language

English (US)

Pages from-to (Number of pages)

Pages 417-430 (14 pages)

Journal (Volume, Issue Number)

Basic Research in Cardiology (Volume 103, Issue 5)

Publication milestones

  • Published - 2008

Publication status

Published - 2008

ISSN

0300-8428

Publication IDs

  • Scopus: 50249168743
  • PubMed: 18431525

Publication metrics

Metrics

Fractional count
1
Fractional count
0.08
Fractional count
11
Fractional count
0.92
Fractional count
1
Fractional count
1
Scopus
citations
SciVal
FWCI
0.48
SciVal
Author count
12
SciVal
citations
20
SciVal
Paper percentile
74

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