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Peripheral Skeletal Muscle Impairment in Children After Treatment for Leukemia and Lymphoma
Gillian E White1,2, Sarah L West1,3, Catherine Sabiston2
1Division of Hematology/Oncology, The Hospital for Sick Children.
Insights
Children treated for cancer, including acute lymphoblastic leukemia (ALL) and lymphoma, show impaired muscle function and reduced exercise capacity. This suggests peripheral muscle changes contribute to exercise intolerance post-treatment.
Area of Science:
- Pediatric Oncology
- Exercise Physiology
- Skeletal Muscle Metabolism
Background:
- Exercise intolerance is a common issue for childhood cancer survivors.
- Reduced aerobic fitness is often linked to cardiovascular issues, but peripheral muscle function remains understudied.
Purpose of the Study:
- To investigate peripheral skeletal muscle function and bioenergetics in children after cancer treatment.
- To compare muscle function between childhood cancer survivors and healthy controls.
Main Methods:
- Utilized noninvasive phosphorus-31 magnetic resonance spectroscopy to assess muscle bioenergetics at rest and during exercise.
- Employed a submaximal graded treadmill test to evaluate exercise capacity.
- Analyzed data using ANOVA and Cohen d for statistical significance and effect size.
Main Results:
- Patients treated for acute lymphoblastic leukemia (ALL) and lymphoma demonstrated reduced anaerobic function and slower metabolic recovery during exercise.
- Lower mechanical muscle power, decreased estimated VO2peak, and reduced physical activity levels were observed in patients compared to controls.
- Cancer survivors exhibited significantly higher inactivity levels.
Conclusions:
- Children treated for ALL and lymphoma present with altered peripheral skeletal muscle metabolism during exercise.
- Both deconditioning and potential direct effects of chemotherapy contribute to exercise intolerance in this population.
Abstract:
Exercise intolerance is a common adverse effect of childhood cancer, contributing to impaired health and well-being. While reduced aerobic fitness has been attributed to central cardiovascular deficiencies, the involvement of peripheral musculature has not been investigated. We studied peripheral muscle function in children following cancer treatment using noninvasive phosphorus-31 magnetic resonance spectroscopy. Ten acute lymphoblastic leukemia (ALL) and 1 lymphoma patient 8 to 18 years of age who completed treatment 6 to 36 months prior and 11 healthy controls participated in the study. Phosphorus-31 magnetic resonance spectroscopy was used to characterize muscle bioenergetics at rest and following an in-magnet knee-extension exercise. Exercise capacity was evaluated using a submaximal graded treadmill test. Both analysis of variance and Cohen d were used as statistical methods to determine the statistical significance and magnitude of differences, respectively, on these parameters between the patient and control groups. The patients treated for ALL and lymphoma exhibited lower anaerobic function ( P =0.14, d =0.72), slower metabolic recovery ( P =0.08, d =0.93), and lower mechanical muscle power ( d =1.09) during exercise compared with healthy controls. Patients demonstrated lower estimated VO 2peak (41.61±5.97 vs. 47.71±9.99 mL/min/kg, P =0.11, d =0.76), lower minutes of physical activity (58.3±35.3 vs. 114.8±79.3 min, P =0.12, d =0.99) and higher minutes of inactivity (107.3±74.0 vs. 43.5±48.3 min, d =1.04, P <0.05). Children treated for ALL and lymphoma exhibit altered peripheral skeletal muscle metabolism during exercise. Both deconditioning and direct effects of chemotherapy likely contribute to exercise intolerance in this population.
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