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Hemodynamic effects of bosentan in patients with chronic heart failure
W Kiowski1, G Sütsch, E Oechslin
1Division of Cardiology, University Hospital, Zürich, Switzerland. Wolfgang.Kiowski@dim.usz.ch
Insights
Endothelin-1 plays a role in chronic heart failure. Bosentan, an endothelin-1 receptor antagonist, improved hemodynamics in patients, suggesting potential as a heart failure therapy.
Area of Science:
- Cardiology
- Pharmacology
- Physiology
Background:
- Endothelin-1, a potent vasoconstrictor, is implicated in chronic heart failure pathophysiology, evidenced by elevated plasma levels correlating with hemodynamic impairment.
- Specific endothelin-1 receptor antagonists offer a direct method to investigate its role and therapeutic potential in heart failure.
Purpose of the Study:
- To review evidence linking endothelin-1 to chronic heart failure pathophysiology.
- To assess the clinical results of bosentan, a mixed endothelin-A/endothelin-B receptor antagonist, in heart failure patients.
Main Methods:
- Review of existing literature on endothelin-1 and heart failure.
- Analysis of clinical data from acute and short-term oral administration of bosentan in heart failure patients, alongside standard therapy (including ACE-inhibitors).
Main Results:
- Bosentan demonstrated marked acute and short-term oral improvements in hemodynamics in heart failure patients.
- These hemodynamic improvements were associated with reduced renin-angiotensin system responsiveness to diuretics and lower basal plasma aldosterone levels.
Conclusions:
- Short-term bosentan therapy shows a promising hemodynamic and neurohumoral profile for chronic heart failure treatment.
- Further long-term trials are necessary to confirm clinical benefit. The comparative efficacy of mixed versus selective ET(A) receptor antagonists remains an open question.
Abstract:
A role of the potent and long-acting vasoconstrictor peptide endothelin-1 and the pathophysiology of chronic human heart failure has been postulated based upon indirect evidence such as elevated plasma endothelin-1 levels and their with the degree of hemodynamic impairment. The advent of specific of endothelin-1 receptor antagonists has provided the opportunity not only to directly evaluate its pathophysiological role but also to assess its potential role as a new approach to heart failure therapy. This brief review summarizes the evidence linking endothelin-1 to the pathophysiology of chronic heart failure and the clinical results obtained in patients during acute, intravenous and more prolonged, oral administration with bosentan, a mixed ET(A)/ET(B)-receptor antagonist. Bosentan acutely and during short-term oral therapy markedly improved hemodynamics in patients in addition to standard heart failure therapy, including an ACE-inhibitor. These effects were associated with a reduced responsiveness of the renin-angiotensin system to diuretic therapy and reduced basal plasma aldosterone levels. Although the hemodynamic and neurohumoral profile of short-term bosentan therapy looks promising for the treatment of patients with chronic heart failure appropriate trials will have to be performed to document clinical benefit during long-term therapy. Finally, the question remains open whether mixed endothelin-1 receptor antagonists like bosentan will have similar effects as compared to antagonists which block the ET(A) receptor only.
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