Background: In experimental conditions alveolar fluid clearance is controlled by alveolar β2-adrenergic receptors. We hypothesized that if this occurs in humans, then non-selective β-blockers should reduce the membrane diffusing capacity (DM), an index of lung interstitial fluid homeostasis. Moreover, we wondered whether this effect is potentiated by saline solution infusion, an intervention expected to cause interstitial lung edema. Since fluid retention within the lungs might trigger excessive ventilation during exercise, we also hypothesized that after the β2-blockade ventilation increased in excess to CO2 output and this was further enhanced by interstitial edema. Methods and Results: 22 healthy males took part in the study. On day 1, spirometry, lung diffusion for carbon monoxide (DLCO) including its subcomponents DM and capillary volume (VCap), and cardiopulmonary exercise test were performed. On day 2, these tests were repeated after rapid 25 ml/kg saline infusion. Then, in random order 11 subjects were assigned to oral treatment with Carvedilol (CARV) and 11 to Bisoprolol (BISOPR). When heart rate fell at least by 10 beats·min-1, the tests were repeated before (day 3) and after saline infusion (day 4). CARV but not BISOPR, decreased DM (-13±7%, p = 0.001) and increased VCap (+20±22%, p = 0.016) and VE/VCO2 slope (+12±8%, p<0.01). These changes further increased after saline: -18±13% for DM (p<0.01), +44±28% for VCap (p<0.001), and +20±10% for VE/VCO2 slope (p<0.001). Conclusions: These findings support the hypothesis that in humans in vivo the β2-alveolar receptors contribute to control alveolar fluid clearance and that interstitial lung fluid may trigger exercise hyperventilation.

Role of alveolar β2-adrenergic receptors on lung fluid clearance and exercise ventilation in healthy humans / S. Paolillo, R. Pellegrino, E. Salvioni, M. Contini, A. Iorio, F. Bovis, A. Antonelli, R. Torchio, C. Gulotta, A. Locatelli, P. Agostoni. - In: PLOS ONE. - ISSN 1932-6203. - 8:4(2013 Apr), pp. e61877.1-e61877.7. [10.1371/journal.pone.0061877]

Role of alveolar β2-adrenergic receptors on lung fluid clearance and exercise ventilation in healthy humans

E. Salvioni;A. Antonelli;P. Agostoni
Ultimo
2013

Abstract

Background: In experimental conditions alveolar fluid clearance is controlled by alveolar β2-adrenergic receptors. We hypothesized that if this occurs in humans, then non-selective β-blockers should reduce the membrane diffusing capacity (DM), an index of lung interstitial fluid homeostasis. Moreover, we wondered whether this effect is potentiated by saline solution infusion, an intervention expected to cause interstitial lung edema. Since fluid retention within the lungs might trigger excessive ventilation during exercise, we also hypothesized that after the β2-blockade ventilation increased in excess to CO2 output and this was further enhanced by interstitial edema. Methods and Results: 22 healthy males took part in the study. On day 1, spirometry, lung diffusion for carbon monoxide (DLCO) including its subcomponents DM and capillary volume (VCap), and cardiopulmonary exercise test were performed. On day 2, these tests were repeated after rapid 25 ml/kg saline infusion. Then, in random order 11 subjects were assigned to oral treatment with Carvedilol (CARV) and 11 to Bisoprolol (BISOPR). When heart rate fell at least by 10 beats·min-1, the tests were repeated before (day 3) and after saline infusion (day 4). CARV but not BISOPR, decreased DM (-13±7%, p = 0.001) and increased VCap (+20±22%, p = 0.016) and VE/VCO2 slope (+12±8%, p<0.01). These changes further increased after saline: -18±13% for DM (p<0.01), +44±28% for VCap (p<0.001), and +20±10% for VE/VCO2 slope (p<0.001). Conclusions: These findings support the hypothesis that in humans in vivo the β2-alveolar receptors contribute to control alveolar fluid clearance and that interstitial lung fluid may trigger exercise hyperventilation.
No
English
Adult ; Bisoprolol ; Carbazoles ; Exercise ; Extracellular Fluid ; Humans ; Hyperventilation ; Lung ; Male ; Propanolamines; Pulmonary Diffusing Capacity ; Receptors, Adrenergic, beta-2; Respiratory Function Tests; Young Adult
Settore MED/11 - Malattie dell'Apparato Cardiovascolare
Articolo
Sì, ma tipo non specificato
apr-2013
Public Library Science
8
4
e61877
1
7
7
Pubblicato
Periodico con rilevanza internazionale
info:eu-repo/semantics/article
Role of alveolar β2-adrenergic receptors on lung fluid clearance and exercise ventilation in healthy humans / S. Paolillo, R. Pellegrino, E. Salvioni, M. Contini, A. Iorio, F. Bovis, A. Antonelli, R. Torchio, C. Gulotta, A. Locatelli, P. Agostoni. - In: PLOS ONE. - ISSN 1932-6203. - 8:4(2013 Apr), pp. e61877.1-e61877.7. [10.1371/journal.pone.0061877]
open
Prodotti della ricerca::01 - Articolo su periodico
11
262
Article (author)
Periodico con Impact Factor
S. Paolillo, R. Pellegrino, E. Salvioni, M. Contini, A. Iorio, F. Bovis, A. Antonelli, R. Torchio, C. Gulotta, A. Locatelli, P. Agostoni
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/235579
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