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Published on: May 24, 2024
Physical function in children and adolescents pre- and 1-year post-liver transplant
Catherine Patterson1,2,3, Stephanie So1,2,3, Kaitie Shipley3
1Rehabilitation Medicine, The Hospital for Sick Children, Toronto, Ontario, Canada.
Insights
Children undergoing liver transplant (LT) show decreased physical function, with deficits in motor skills and endurance. Post-LT, they report less fatigue and more physical activity, indicating a need for rehabilitation.
Area of Science:
- Pediatric Gastroenterology
- Transplant Surgery
- Rehabilitation Medicine
Background:
- Limited research exists on physical function in older children and adolescents post-liver transplant (LT).
- Previous studies indicate poorer motor outcomes in younger pediatric populations after LT.
Purpose of the Study:
- To evaluate physical function in children aged ≥6 years before and 1 year after LT.
- To identify associations between medical variables and physical function outcomes.
Main Methods:
- Retrospective review of standard physical function measures (6-minute walk test, grip strength, BOT-2, PAQ, Fatigue Scale) in children ≥6 years at LT.
- Exploration of correlations between medical variables and functional outcomes.
Main Results:
- Children demonstrated significantly lower pre-LT physical activity and endurance (6MWT) compared to norms.
- Post-LT, deficits persisted in motor proficiency (BOT-2 strength/agility), though fatigue decreased and physical activity increased.
- Pre-LT balance issues correlated with abdominal distention and splenomegaly; lower platelet counts were linked to poorer balance and motor skills.
Conclusions:
- Older children and adolescents undergoing LT are at risk for diminished physical function.
- Pre- and post-LT rehabilitation is crucial for optimizing long-term outcomes in pediatric liver transplant recipients.
Background:
Several studies describe poorer motor developmental motor outcomes post-liver transplant (LT) in younger children. Limited studies examine physical function in older children and adolescents pre- and post-LT.
Methods:
Retrospective review of standard of care physical function outcome measures pre- and 1-year post-LT in children ≥6 years at LT. Measures include: 6-minute walk test (6MWT), grip strength, Bruininks-Oseretsky Test of Motor Proficiency-2 (BOT-2) components, Physical Activity Questionnaire (PAQ), and Paediatric Quality of Life Multidimensional Fatigue Scale. Association of medical variables with outcomes was explored.
Results:
The study cohort included 23 (8 male, median (interquartile range) age 11.67 (8.25, 13.92) years at LT) participants. Top two primary diagnoses included biliary atresia (30.4%) and fulminant hepatic failure (21.7%). At 1-year post-LT, over one-third (36%) were overweight or obese. Compared with healthy norms, children had significantly lower pre-LT PAQ scores (p = .002), pre- and post-6MWT scores (p < .001) and post-LT BOT-2 strength and agility scores (p < .001). Pre-LT, lower balance scores were associated with abdominal distention/ascites (p = .009) and splenomegaly (p = .017). Lower pre-LT platelet count correlated with poorer balance (r = .532, p = .017) and lower strength and agility scores (r = .446, p = .043). Significant moderate inverse correlations were found between weight/body mass index z-scores and BOT-2 components. Post-LT children continue to demonstrate decreased levels of motor proficiency and functional capacity but report less fatigue and increased physical activity.
Conclusions:
Older children and adolescents undergoing LT are at risk of decreased physical function, highlighting the need for pre- and post-LT rehabilitation to optimize long term outcomes.
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