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Physical activity and physical fitness in children with heritable connective tissue disorders
Lisanne de Koning1,2, Jessica Warnink-Kavelaars2,3, Marion van Rossum4,5
1Center of Expertise Urban Vitality, Faculty of Health, University of Applied Sciences Amsterdam, Amsterdam, Netherlands.
Insights
Children with heritable connective tissue disorders (HCTD) show reduced physical activity (PA) and physical fitness (PF). Interventions should address limitations in cardiovascular endurance and muscle strength, considering pain and fatigue.
Area of Science:
- Pediatrics
- Genetics
- Rehabilitation Medicine
Background:
- Heritable connective tissue disorders (HCTD) present diverse health challenges impacting physical activity (PA) and physical fitness (PF).
- Understanding the PA and PF levels in children with HCTD is crucial for developing targeted interventions.
Purpose of the Study:
- To investigate and quantify the physical activity (PA) and physical fitness (PF) levels in children diagnosed with heritable connective tissue disorders (HCTD).
Main Methods:
- PA assessed via accelerometer (ActivPAL) and PEDI-CAT mobility.
- PF measured by cardiovascular endurance (Fitkids Treadmill Test), muscle strength (hand grip dynamometry), and motor proficiency (BOTMP-2).
- Study included 56 children with Marfan syndrome, Loeys-Dietz syndrome, and Ehlers-Danlos syndromes.
Main Results:
- Children with HCTD exhibited below-average mobility, cardiovascular endurance, and muscle strength.
- Physical activity levels showed significant sedentary time and sleep duration.
- Positive correlation found between PA and PF; negative correlations between PA and pain/fatigue.
Conclusions:
- This study is the first to report reduced PA and PF in pediatric HCTD populations.
- Cardiovascular endurance and muscle strength deficits are key findings, potentially linked to disorder-specific features.
- Results highlight the need for personalized interventions to improve PA and PF in children with HCTD.
Objectives:
Health problems in patients with heritable connective tissue disorders (HCTD) are diverse and complex and might lead to lower physical activity (PA) and physical fitness (PF). This study aimed to investigate the PA and PF of children with heritable connective tissue disorders (HCTD).
Methods:
PA was assessed using an accelerometer-based activity monitor (ActivPAL) and the mobility subscale of the Pediatric Evaluation of Disability Inventory Computer Adaptive Test (PEDI-CAT). PF was measured in terms of cardiovascular endurance using the Fitkids Treadmill Test (FTT); maximal hand grip strength, using hand grip dynamometry (HGD) as an indicator of muscle strength; and motor proficiency, using the Bruininks-Oseretsky Test of Motor Proficiency-2 (BOTMP-2).
Results:
A total of 56 children, with a median age of 11.6 (interquartile range [IQR], 8.8-15.8) years, diagnosed with Marfan syndrome (MFS), n = 37, Loeys-Dietz syndrome (LDS), n = 6, and genetically confirmed Ehlers-Danlos (EDS) syndromes, n = 13 (including classical EDS n = 10, vascular EDS n = 1, dermatosparaxis EDS n = 1, arthrochalasia EDS n = 1), participated. Regarding PA, children with HCTD were active for 4.5 (IQR 3.5-5.2) hours/day, spent 9.2 (IQR 7.6-10.4) hours/day sedentary, slept 11.2 (IQR 9.5-11.5) hours/day, and performed 8,351.7 (IQR 6,456.9-1,0484.6) steps/day. They scored below average (mean (standard deviation [SD]) z-score -1.4 (1.6)) on the PEDI-CAT mobility subscale. Regarding PF, children with HCTD scored well below average on the FFT (mean (SD) z-score -3.3 (3.2)) and below average on the HGD (mean (SD) z-score -1.1 (1.2)) compared to normative data. Contradictory, the BOTMP-2 score was classified as average (mean (SD) z-score.02 (.98)). Moderate positive correlations were found between PA and PF (r(39) = .378, p < .001). Moderately sized negative correlations were found between pain intensity and fatigue and time spent actively (r(35) = .408, p < .001 and r(24) = .395 p < .001, respectively).
Conclusion:
This study is the first to demonstrate reduced PA and PF in children with HCTD. PF was moderately positively correlated with PA and negatively correlated with pain intensity and fatigue. Reduced cardiovascular endurance, muscle strength, and deconditioning, combined with disorder-specific cardiovascular and musculoskeletal features, are hypothesized to be causal. Identifying the limitations in PA and PF provides a starting point for tailor-made interventions.
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