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June 12, 2007European Journal of Heart Failure65 citations

Lung Function with Carvedilol and Bisoprolol in Chronic Heart Failure: Is β Selectivity Relevant?

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PAPiergiuseppe AgostoniMCMauro ContiniGCGaia Cattadori

Key Result

Bisoprolol treatment in chronic heart failure patients resulted in higher carbon monoxide lung diffusion (90% vs 82% of predicted, p<0.01) and peak VO2 compared to carvedilol.

Key Points

  • To compare the respiratory effects of the non-selective beta-blocker carvedilol and the beta1-selective beta-blocker bisoprolol in patients with chronic heart failure.
  • Conducted a double-blind, cross-over study in 53 chronic heart failure patients treated for 2 months with full-dose carvedilol or bisoprolol.
  • Assessed respiratory function via salbutamol challenge, carbon monoxide lung diffusion (DLCO), alveolar membrane conductance (DM), and peak oxygen consumption (peak VO2) during exercise.
  • Post-salbutamol FEV1 was significantly higher with bisoprolol compared to carvedilol (p<0.04), while baseline FEV1 and FVC were similar.
  • DLCO was significantly higher with bisoprolol (90±20% of predicted) than with carvedilol (82±21% of predicted, p<0.01) due to differences in membrane conductance.
  • Peak VO2 was higher on bisoprolol (17.8±4.5 mL/min/kg) than on carvedilol (17.0±4.6 mL/min/kg, p<0.05), with greater differences observed in 22 patients with DLCO <80%.

Study Design

Type

RCT (n=53)

Blinding

Double-blind

Structured PICO

Does carvedilol compared to bisoprolol affect lung function and gas exchange in patients with chronic heart failure?

P
Population
53 patients with chronic heart failure (CHF)
I
Intervention
Carvedilol full dose for 2 months
C
Comparator
Bisoprolol full dose for 2 months (cross-over design)
O
Outcome
Lung function assessed by salbutamol challenge, carbon monoxide lung diffusion (DLCO), membrane conductance (DM), and gas exchange during exercise after 2 months of treatmentsurrogate

Bisoprolol, a more beta1-selective blocker, resulted in slightly higher DLCO and peak VO2 compared to carvedilol in CHF patients, suggesting that beta2-receptor blockade by carvedilol may negatively affect alveolar gas diffusion.

Main Result

Absolute Event Rate: 90% vs 82%

p-value: p=<0.01

Abstract

BACKGROUND: Carvedilol is a beta-blocker with similar affinity for beta1- and beta2 receptors, while bisoprolol has higher beta1 affinity. The respiratory system is characterized by beta2-receptor prevalence. Airway beta receptors regulate bronchial tone and alveolar beta receptors regulate alveolar fluid re-absorption which influences gas diffusion. AIMS: To compare the effects of carvedilol and bisoprolol on lung function in patients with chronic heart failure (CHF). METHODS AND RESULTS: We performed a double-blind, cross-over study in 53 CHF patients. After 2 months of full dose treatment with either carvedilol or bisoprolol, we assessed lung function by salbutamol challenge, carbon monoxide lung diffusion (DLCO), including membrane conductance (DM), and gas exchange during exercise. FEV1 and FVC were similar; after salbutamol FEV1 was higher with bisoprolol (p<0.04). DLco was 82+/-21% of predicted with carvedilol and 90+/-20% with bisoprolol (p<0.01) due to DM changes. Peak VO2 was 17.8+/-4.5 mL/min/kg on bisoprolol and 17.0+/-4.6 on carvedilol, (p<0.05) with no differences in bronchial tone (same expiratory time) throughout exercise. Differences were greater in the 22 subjects with DLCO<80%. CONCLUSION: Carvedilol and bisoprolol have different effects on DLCO and response to salbutamol. DLCO differences, being DM related, are due to changes in active membrane transport which is under alveolar beta2-receptor control. Peak VO2 was slightly higher with bisoprolol particularly in CHF patients with reduced DLCO.

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Cite This Study

Agostoni et al. (2007) conducted an RCT in Chronic heart failure (CHF) (n=53). Bisoprolol vs. Carvedilol was evaluated on Carbon monoxide lung diffusion (DLCO) (% of predicted) (p=<0.01). Bisoprolol treatment in chronic heart failure patients resulted in higher carbon monoxide lung diffusion (90% vs 82% of predicted, p<0.01) and peak VO2 compared to carvedilol.

synapsesocial.com/papers/6a1b158a5aeb978a24c211ddhttps://doi.org/10.1016/j.ejheart.2007.04.006
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