PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 17, 2004Circulation108 citations

Altered Calcium Handling Is Critically Involved in the Cardiotoxic Effects of Chronic β-Adrenergic Stimulation

View Full Paper
SEStefan EngelhardtLHLutz HeinVDVitaly Dyachenkow

Key Result

Genetic deletion of phospholamban in beta1-adrenergic receptor transgenic mice dramatically enhanced survival and reversed left ventricular contractility, cardiac hypertrophy, and fibrosis.

Structured PICO

Does deletion of phospholamban improve survival and cardiac function in mice with transgenic overexpression of the beta1-adrenergic receptor?

P
Population
Mice with transgenic overexpression of the beta1-adrenergic receptor (beta1TG)
I
Intervention
Genetic modification of calcium handling through targeted deletion of the phospholamban gene (PLB-/-)
C
Comparator
beta1TG mice without phospholamban deletion and wild-type mice
O
Outcome
Survival, left ventricular contractility, cardiac hypertrophy, fibrosis, heart failure-specific gene expression pattern, and intracellular calcium transientssurrogate

Ablation of phospholamban rescues functional, morphological, and molecular characteristics of heart failure in beta1-adrenergic receptor-transgenic mice, highlighting the critical role of altered calcium handling in beta1-adrenergic cardiotoxicity.

Abstract

BACKGROUND: Chronic adrenergic stimulation leads to cardiac hypertrophy and heart failure in experimental models and contributes to the progression of heart failure in humans. The pathways mediating the detrimental effects of chronic beta-adrenergic stimulation are only partly understood. We investigated whether genetic modification of calcium handling through deletion of phospholamban in mice would affect the development of heart failure in mice with transgenic overexpression of the beta1-adrenergic receptor. METHODS AND RESULTS: We crossed beta1-adrenergic receptor transgenic (beta1TG) mice with mice homozygous for a targeted deletion of the phospholamban gene (PLB-/-). Phospholamban ablation dramatically enhanced survival of beta1TG mice. The decrease of left ventricular contractility typically observed in beta1TG mice was reverted back to normal by phospholamban ablation. Cardiac hypertrophy and fibrosis were significantly inhibited in beta1TG/PLB-/- mice compared with beta1TG mice, and the heart failure-specific gene expression pattern was normalized. Analysis of intracellular calcium transients revealed increased diastolic calcium levels and decreased rate constants of diastolic calcium decline in beta1TG mice. In beta1TG/PLB-/- mice, diastolic calcium concentration was normal and rate constants of diastolic calcium decline were greater than in wild-type mice. CONCLUSIONS: We conclude that modification of abnormal calcium handling in beta1TG mice through ablation of phospholamban resulted in a rescue of functional, morphological, and molecular characteristics of heart failure in beta1-adrenergic receptor-transgenic mice. These results imply altered calcium handling as critical for the detrimental effects of beta1-adrenergic signaling.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Engelhardt et al. (2004) studied Heart failure induced by chronic beta-adrenergic stimulation. Targeted deletion of the phospholamban gene (PLB-/-) vs. beta1TG mice (wild-type for phospholamban) was evaluated on Survival and heart failure characteristics (LV contractility, hypertrophy, fibrosis). Genetic deletion of phospholamban in beta1-adrenergic receptor transgenic mice dramatically enhanced survival and reversed left ventricular contractility, cardiac hypertrophy, and fibrosis.

synapsesocial.com/papers/6a178ad88d470cd9925361c1https://doi.org/10.1161/01.cir.0000117254.68497.39
Ask AI
Helpful
Bookmark
Share
View Full Paper