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Inhalation of the Phosphodiesterase-3 Inhibitor Milrinone Attenuates Pulmonary Hypertension in a Rat Model of Congestive Heart Failure
Authors:Hentschel  Thomas MD; Yin  Ning MD&#x;; Riad  Alexander MD&#x;; Habbazettl  Helmut MD ; Weimann  Jrg MD&#x;; Koster  Andreas MD#; Tschope  Carsten MD; Kuppe  Hermann MD&#x;&#x;; Kuebler  Wolfgang M MD&#x;&#x;
Institution:Hentschel, Thomas M.D.*; Yin, Ning M.D.?; Riad, Alexander M.D.?; Habbazettl, Helmut M.D.§; Weimann, Jörg M.D.∥; Koster, Andreas M.D.#; Tschope, Carsten M.D.**; Kuppe, Hermann M.D.??; Kuebler, Wolfgang M. M.D.??
Abstract:Background: Most patients with congestive heart failure (CHF) develop pulmonary venous hypertension, but right ventricular afterload is frequently further elevated by increased pulmonary vascular resistance. To investigate whether inhalation of a vasodilatory phosphodiesterase-3 inhibitor may reverse this potentially detrimental process, the authors studied the effects of inhaled or intravenous milrinone on pulmonary and systemic hemodynamics in a rat model of CHF.

Methods: In male Sprague-Dawley rats, CHF was induced by supracoronary aortic banding, whereas sham-operated rats served as controls. Milrinone was administered as an intravenous infusion (0.2-1 mu]g middle dot] kg body weight-1 middle dot] min-1) or by inhalation (0.2-5 mg/ml), and effects on pulmonary and systemic hemodynamics and lung water content were measured.

Results: In CHF rats, intravenous infusion of milrinone reduced both pulmonary and systemic arterial blood pressure. In contrast, inhalation of milrinone predominantly dilated pulmonary blood vessels, resulting in a reduced pulmonary-to-systemic vascular resistance ratio. Repeated milrinone inhalations in 20-min intervals caused a stable reduction of pulmonary artery pressure. No hemodynamic effects were detected when 0.9% NaCl was administered instead of milrinone or when milrinone was inhaled in sham-operated rats. No indications of potentially adverse effects of milrinone inhalation in CHF, such as left ventricular volume overload, were detected. Moreover, lung edema was significantly reduced by repeated milrinone inhalation.

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