How Do Sex and Cardiorespiratory Fitness Impact Pulmonary Diffusing Capacity?
Cameron M Ehnes, Sophie É Collins, Andrew R Brotto
1Division of Pulmonary Medicine, Department of Medicine, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, AB, CANADA.
Introduction:
Physiological outcomes, like pulmonary diffusing capacity, can be impacted by non-modifiable ( e.g. , biological sex) and modifiable ( e.g. , cardiorespiratory fitness) factors. The quantification of potential combined, interactive effects of these factors remains unreported in the literature.
Purpose:
This study aimed to examine the independent and combined associations of sex and cardiorespiratory fitness ( V̇ O 2peak ) with pulmonary diffusing capacity (DL CO ) and its determinants (capillary blood volume, V C ; and membrane diffusing capacity, D M ) at rest and during exercise, while controlling for lung size.
Methods:
This retrospective study utilized general linear regression and linear mixed effects modeling to evaluate DL CO (adjusted for hemoglobin) and its determinants at rest and during exercise in n = 113 participants (57 female).
Results:
Sex, V̇ O 2peak , and alveolar volume (V A ) all showed significant bivariate associations with diffusing capacity of the lung for carbon monoxide (DL CO ) when tested separately (all P < 0.001). In our final model, after accounting for V A , only sex remained significantly associated with resting DL CO ( P = 0.047), whereas V̇ O 2peak was associated with resting V C ( P = 0.009). No significant interaction effects were detected for resting data. After accounting for V A , exercise DL CO was significantly associated with sex but not V̇ O 2peak ( P < 0.001). A significant sex* V̇ O 2peak *intensity interaction was detected in exercise DL CO whereby individuals with higher V̇ O 2peak have greater exercise DL CO , and trained males have a greater DL CO compared with trained females ( Pinteraction < 0.001; males, P < 0.001; females, P < 0.001). Exercise V C was not associated with V̇ O 2peak or sex after accounting for V A , but a significant sex* V̇ O 2peak *intensity interaction effect on exercise V C was detected ( Pinteraction = 0.009; males, P = 0.039; females, P = 0.298).
Conclusions:
By examining the independent and combined associations of sex and V̇ O 2peak with DL CO and its determinants, our findings identified that the DL CO response to exercise is modified by the combined effects of sex and fitness.
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