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Genetic Variation in the Dopamine System Influences Intervention Outcome in Children with Cerebral Palsy
Rochellys Diaz Heijtz1, Rita Almeida1, Ann Christin Eliasson2
1Department of Neuroscience, Karolinska Institutet, Stockholm, Sweden.
Insights
Genetic variations in dopamine pathways significantly impact treatment outcomes for children with cerebral palsy. A higher dopamine gene score predicts greater functional gains from rehabilitation interventions.
Area of Science:
- Neuroscience
- Genetics
- Pediatrics
Background:
- Cerebral palsy (CP) exhibits significant variability in treatment response.
- Dopamine and brain-derived neurotrophic factor (BDNF) pathways are implicated in motor learning and plasticity crucial for CP habilitation.
- Investigating genetic influences on these pathways may explain treatment outcome disparities.
Purpose of the Study:
- To determine if genetic variations in dopamine and BDNF genes affect treatment outcomes in children with spastic unilateral cerebral palsy.
- To explore the potential of genetic profiling for personalizing CP interventions.
Main Methods:
- Thirty-three children (18-60 months) with spastic unilateral CP participated in a 2-month intensive hand training program.
- Functional outcomes were assessed using the Assisting Hand Assessment (AHA) pre- and post-intervention.
- Saliva samples were genotyped for polymorphisms in dopamine-related genes (COMT, DAT, DRD1, DRD2, DRD3) and BDNF.
Main Results:
- A significant association was found between variations in dopamine genes and treatment outcomes.
- Children with a high polygenic dopamine gene score demonstrated the most substantial functional gains.
- This score reflects higher endogenous dopaminergic neurotransmission.
Conclusions:
- Naturally occurring genetic variations within the dopamine system influence treatment success in pediatric cerebral palsy.
- A polygenic dopamine score shows promise for predicting treatment outcomes.
- This genetic information could aid in developing tailored rehabilitation strategies for children with CP.
Background:
There is large variation in treatment responses in children with cerebral palsy. Experimental and clinical results suggest that dopamine neurotransmission and brain-derived neurotrophic factor (BDNF) signalling are involved in motor learning and plasticity, which are key factors in modern habilitation success. We examined whether naturally occurring variations in dopamine and BDNF genes influenced the treatment outcomes.
Methods:
Thirty-three children (18-60months of age) with spastic unilateral cerebral palsy were enrolled in the study. Each child had participated in a training programme consisting of active training of the involved hand for 2h every day during a 2-month training period. The training outcome was measured using Assisting Hand Assessment before and after the training period. Saliva was collected for genotyping of COMT, DAT, DRD1, DRD2, DRD3, and BDNF. Regression analyses were used to examine associations between genetic variation and training outcome.
Findings:
There was a statistically significant association between variation in dopamine genes and treatment outcome. Children with a high polygenic dopamine gene score including polymorphisms of five dopamine genes (COMT, DAT, DRD1, DRD2, and DRD3), and reflecting higher endogenous dopaminergic neurotransmission, had the greatest functional outcome gains after intervention.
Interpretation:
Naturally occurring genetic variation in the dopamine system can influence treatment outcomes in children with cerebral palsy. A polygenic dopamine score might be valid for treatment outcome prediction and for designing individually tailored interventions for children with cerebral palsy.
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