Skeletal muscle adiposity is associated with physical activity, exercise capacity and fibre shift in COPD
Author(s)
Type
Journal Article
Abstract
Quadriceps muscle phenotype varies widely between patients with chronic obstructive pulmonary disease (COPD) and cannot be determined without muscle biopsy. We hypothesised that measures of skeletal muscle adiposity could provide noninvasive biomarkers of muscle quality in this population.
In 101 patients and 10 age-matched healthy controls, mid-thigh cross-sectional area, percentage intramuscular fat and skeletal muscle attenuation were calculated using computed tomography images and standard tissue attenuation ranges: fat -190– -30 HU; skeletal muscle -29–150 HU.
Mean±sd percentage intramuscular fat was higher in the patient group (6.7±3.5% versus 4.3±1.2%, p = 0.03). Both percentage intramuscular fat and skeletal muscle attenuation were associated with physical activity level, exercise capacity and type I fibre proportion, independent of age, mid-thigh cross-sectional area and quadriceps strength. Combined with transfer factor of the lung for carbon monoxide, these variables could identify >80% of patients with fibre type shift with >65% specificity (area under the curve 0.83, 95% CI 0.72–0.95).
Skeletal muscle adiposity assessed by computed tomography reflects multiple aspects of COPD related muscle dysfunction and may help to identify patients for trials of interventions targeted at specific muscle phenotypes.
In 101 patients and 10 age-matched healthy controls, mid-thigh cross-sectional area, percentage intramuscular fat and skeletal muscle attenuation were calculated using computed tomography images and standard tissue attenuation ranges: fat -190– -30 HU; skeletal muscle -29–150 HU.
Mean±sd percentage intramuscular fat was higher in the patient group (6.7±3.5% versus 4.3±1.2%, p = 0.03). Both percentage intramuscular fat and skeletal muscle attenuation were associated with physical activity level, exercise capacity and type I fibre proportion, independent of age, mid-thigh cross-sectional area and quadriceps strength. Combined with transfer factor of the lung for carbon monoxide, these variables could identify >80% of patients with fibre type shift with >65% specificity (area under the curve 0.83, 95% CI 0.72–0.95).
Skeletal muscle adiposity assessed by computed tomography reflects multiple aspects of COPD related muscle dysfunction and may help to identify patients for trials of interventions targeted at specific muscle phenotypes.
Date Issued
2014-10-31
Date Acceptance
2014-05-23
Citation
European Respiratory Journal, 2014, 44 (5), pp.1188-1198
ISSN
1399-3003
Publisher
European Respiratory Society
Start Page
1188
End Page
1198
Journal / Book Title
European Respiratory Journal
Volume
44
Issue
5
Copyright Statement
© ERS 2014. ERJ Open articles are open access and distributed under the terms of the Creative Commons
Attribution Non-Commercial Licence 4.0.
Attribution Non-Commercial Licence 4.0.
License URL
Sponsor
Medical Research Council (MRC)
Identifier
https://erj.ersjournals.com/content/44/5/1188
Grant Number
G0701628
Subjects
Science & Technology
Life Sciences & Biomedicine
Respiratory System
OBSTRUCTIVE PULMONARY-DISEASE
CROSS-SECTIONAL AREA
COMPUTED-TOMOGRAPHY
BODY-COMPOSITION
INSULIN SENSITIVITY
THIGH MUSCLE
QUADRICEPS STRENGTH
VASTUS LATERALIS
HEALTH
ATTENUATION
Publication Status
Published
Date Publish Online
2014-10-31