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July 11, 2019Journal of Applied Physiology7 citationsOpen Access

The effect of pulmonary rehabilitation on carotid chemoreceptor activity and sensitivity in chronic obstructive pulmonary disease

BBBradley W. ByersDFDesi P. FuhrLMLinn E. Moore

Structured PICO

Does pulmonary rehabilitation reduce carotid chemoreceptor activity and sensitivity in patients with chronic obstructive pulmonary disease?

P
Population
60 patients with chronic obstructive pulmonary disease (COPD), including 45 undergoing pulmonary rehabilitation (mean FEV1 56.6% predicted) and 15 non-PR controls (mean FEV1 74.6% predicted).
I
Intervention
Pulmonary rehabilitation (PR)
C
Comparator
Non-PR controls
O
Outcome
Carotid chemoreceptor (CC) activity and sensitivitysurrogate

Pulmonary rehabilitation improves exercise tolerance and dyspnea but does not consistently reduce carotid chemoreceptor activity or sensitivity in stable COPD patients.

Abstract

Recent work demonstrates that carotid chemoreceptor (CC) activity/sensitivity is elevated in patients with chronic obstructive pulmonary disease (COPD) compared with healthy controls, and this elevated chemoreception appears to contribute to increased cardiovascular risk. Exercise training has been shown to normalize CC activity/sensitivity in other populations, and therefore, the purpose of this study was to determine whether pulmonary rehabilitation (PR) can reduce CC activity/sensitivity in COPD. Forty-five COPD patients mean FEV 1 (forced expiratory volume in 1 s) = 56.6% predicted completed PR, while 15 COPD patients (mean FEV 1 = 74.6% predicted) served as non-PR controls. CC activity was determined by the reduction in ventilation while breathing transient hyperoxia (Formula: see text = 1.0); CC sensitivity was evaluated by the increase in ventilation relative to the drop in arterial saturation while breathing hypoxia. Dyspnea, six-minute walk and autonomic function data were also obtained. PR improved 6-minute walk distance ( P 0.05 for all). Subgroup analyses indicated that PR reduced CC activity in those with elevated baseline CC activity, independent of changes in autonomic function. No change in dyspnea ( P = 0.24), CC activity ( P = 0.19), sensitivity ( P = 0.80), or autonomic function ( P > 0.05 for all) was observed in the control group. Despite improvements in exercise tolerance and dyspnea, PR appears to be generally ineffective at reducing CC sensitivity in stable COPD patients; while PR reduced CC activity in those with elevated basal CC activity, the physiological significance of this is unclear. Further investigations aimed at improving CC function in COPD are needed. NEW & NOTEWORTHY While work in other chronic diseases has shown that exercise training may help normalize carotid chemoreceptor (CC) activity/sensitivity, the current study found that exercise training through pulmonary rehabilitation did not consistently reduce CC activity/sensitivity in patients with chronic obstructive pulmonary disease (COPD). These results suggest that other interventions are needed to normalize CC activity/sensitivity in COPD.

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Cite This Study

Byers et al. (2019) studied this question.

synapsesocial.com/papers/6a1df099a3f4c58cc93515cfhttps://doi.org/10.1152/japplphysiol.00799.2018
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