Effects of enoximone on peripheral and central chemoreflex responses in humans

cAMP plays an important role in peripheral chemoreflex function in animals. We tested the hypothesis that the phosphodiesterase inhibitor and inotropic medication enoximone increases peripheral chemoreflex function in humans. In a single-blind, randomized, placebo-controlled crossover study of 15 me...

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Veröffentlicht in:American Journal of Physiology: Cell Physiology 2008-01, Vol.294 (1), p.H322-H329
Hauptverfasser: Gujic, Marko, Dreyfuss, Celine, Argacha, Jean-Francois, Beloka, Sofia, Adamopoulos, Dionysios, Xhaeet, Olivier, Pathak, Atul, van de Borne, Philippe
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Sprache:eng
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Zusammenfassung:cAMP plays an important role in peripheral chemoreflex function in animals. We tested the hypothesis that the phosphodiesterase inhibitor and inotropic medication enoximone increases peripheral chemoreflex function in humans. In a single-blind, randomized, placebo-controlled crossover study of 15 men, we measured ventilatory, muscle sympathetic nerve activity, and hemodynamic responses to 5 min of isocapnic hypoxia, 5 min of hyperoxic hypercapnia, and 3 min of isometric handgrip exercise, separated by 1 wk, with enoximone and placebo administration. Enoximone increased cardiac output by 120 plus or minus 3.7% from baseline (P < 0.001); it also increased the ventilatory response to acute hypoxia [13.6 plus or minus 1 vs. 11.2 plus or minus 0.7 l/min at 5 min of hypoxia, P = 0.03 vs. placebo (by ANOVA)]. Despite a larger minute ventilation and a smaller decrease in O sub(2) desaturation (83 plus or minus 1 vs. 79 plus or minus 2%, P = 0.003), the muscle sympathetic nerve response to hypoxia was similar between enoximone and placebo (123 plus or minus 6 and 117 plus or minus 6%, respectively, P = 0.28). In multivariate regression analyses, enoximone enhanced the ventilatory (P < 0.001) and sympathetic responses to isocapnic hypoxia. Hyperoxic hypercapnia and isometric handgrip responses were not different between enoximone and placebo (P = 0.13). Enoximone increases modestly the chemoreflex responses to isocapnic hypoxia. Moreover, this effect is specific for the peripheral chemoreflex, inasmuch as central chemoreflex and isometric handgrip responses were not altered by enoximone.
ISSN:0363-6143
1522-1563