Key result
Rapid ventricular pacing-induced congestive heart failure in canines resulted in significant increases in local ET-1 in left ventricular, renal, and pulmonary tissue.
Why the study?
Does rapid ventricular pacing-induced congestive heart failure alter local ET-1 tissue concentrations and prepro-ET-1 gene expression in cardiorenal and pulmonary tissues in a canine model?
Does rapid ventricular pacing-induced congestive heart failure alter local ET-1 tissue concentrations and prepro-ET-1 gene expression in cardiorenal and pulmonary tissues in a canine model?
p-value: p=<0.05
In a canine model of heart failure, there is a differential pattern of ET-1 activation with strong accumulation in kidney and lung, suggesting pulmonary and atrial tissue may contribute to increased circulating and local ET-1.
Hypothesis-generating for tissue-specific ET-1 roles in experimental HF; leaves open translation to human therapies.
Endothelin-1 (ET-1) is a peptide that has been implicated in congestive heart failure (CHF). Although increased concentrations of circulating ET-1 have been repeatedly demonstrated, the activation of local ET-1 in target tissues of CHF remains poorly defined. Our objective was to characterize ET-1 tissue concentrations and gene expression of prepro ET-1 in myocardial, renal, and pulmonary tissue in rapid ventricular pacing-induced canine CHF. Progressive rapid ventricular pacing (38 days) resulted in impaired cardiovascular hemodynamics, increased atrial and left ventricular mass, decreased renal sodium excretion, and increased ET-1 plasma concentrations (all P < 0.05). Tissue analysis revealed significant increases in local ET-1 during CHF in left ventricular, renal, and pulmonary tissue, whereas a moderate increase in left atrial ET-1 did not reach statistical significance. In contrast, prepro-ET-1 gene expression was increased more than threefold in pulmonary tissue and more than twofold in left atrial myocardium with no increase in left ventricular or renal gene expression. The present studies demonstrate a differential pattern of ET-1 activation in cardiorenal and pulmonary tissue with a strong accumulation of ET-1 in kidney and lung during CHF. Although the observed increase in left ventricular and renal ET-1 in association with unaltered gene expression is consistent with increased uptake, pulmonary and atrial tissue may contribute to increased circulating and local ET-1 in CHF.
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Luchner et al. (2000) studied Congestive heart failure. Rapid ventricular pacing-induced CHF was evaluated on ET-1 tissue concentrations and gene expression of prepro ET-1 in myocardial, renal, and pulmonary tissue (p=<0.05). Rapid ventricular pacing-induced congestive heart failure in canines resulted in significant increases in local ET-1 in left ventricular, renal, and pulmonary tissue.
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