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December 22, 1998Circulation29 citationsOpen Access

Preserved Vasodilator Effect of Bradykinin in Dogs With Heart Failure

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JSJin Bo SuFBFabrice BarbeRHRémi Hoüel

Key Result

In a dog model of pacing-induced heart failure, the vasodilator effects of exogenous and endogenous bradykinin on mean aortic pressure and cardiac output are preserved.

Structured PICO

Does bradykinin infusion reduce mean aortic pressure and increase cardiac output in dogs with pacing-induced heart failure?

P
Population
14 chronically instrumented dogs studied in the control state and in pacing-induced heart failure (250 bpm for 3 weeks)
I
Intervention
Bradykinin infusion, enalaprilat, ciprokiren, and Hoe 140 (bradykinin B2 receptor antagonist)
C
Comparator
Control state (same dogs prior to heart failure induction)
O
Outcome
Changes in mean aortic pressure (MAP) and cardiac output (CO)surrogate

The vasodilator effects of exogenous and endogenous bradykinin are preserved in a canine model of pacing-induced heart failure, despite blunted endothelium-derived vasodilation.

Abstract

BACKGROUND: In heart failure (HF), vasoconstrictor systems are activated and endothelium-derived vasodilation is blunted. Bradykinin, a potent vasodilator, may play an important role in this setting. However, it is not known whether its vasodilator effect is modified in HF. METHODS AND RESULTS: Fourteen chronically instrumented dogs were studied in the control state and in pacing-induced HF (250 bpm for 3 weeks). The dose-dependent decrease in mean aortic pressure (MAP) induced by acetylcholine was significantly blunted in HF. In contrast, in both control and HF, bradykinin infusion caused similar dose-dependent decreases in MAP and increases in cardiac output (CO). This vasodilator effect of exogenous bradykinin was potentiated similarly in both states by enalaprilat, which blocks both angiotensin conversion and bradykinin degradation. For evaluating the role of endogenous bradykinin, the effects of enalaprilat were compared with those of ciprokiren, a pure renin inhibitor. In control, ciprokiren did not produce any effect. Enalaprilat, however, produced a significant decrease in MAP and a significant increase in CO, which were attributed to the inhibition of bradykinin degradation, because these effects were absent after pretreatment with Hoe 140 (a bradykinin B2 receptor antagonist). In contrast, in HF, vasodilator effects of ciprokiren were observed, but enalaprilat produced larger changes in MAP and CO, and after Hoe 140, the hemodynamic effects of enalaprilat were significantly decreased, showing the effects of endogenous bradykinin, which were similar to those measured in control. CONCLUSIONS: In this model of HF with a blunted endothelium-derived vasodilation, the vasodilator effects of exogenous and endogenous bradykinin are preserved. These results suggest that bradykinin may play an important role in HF, in which vasoconstriction is present and endothelium-dependent vasodilation is blunted.

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Cite This Study

Su et al. (1998) studied Heart failure (n=14). Bradykinin, enalaprilat, ciprokiren, Hoe 140 vs. Control state was evaluated on Changes in mean aortic pressure and cardiac output. In a dog model of pacing-induced heart failure, the vasodilator effects of exogenous and endogenous bradykinin on mean aortic pressure and cardiac output are preserved.

synapsesocial.com/papers/6a0b9d2399ab7efa16d0a015https://doi.org/10.1161/01.cir.98.25.2911
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