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An In Vitro Model for the Study of Cellular Pathophysiology in Globoid Cell Leukodystrophy
Published on: October 21, 2014
The natural history of variable subtypes in pediatric-onset TUBB4A-related leukodystrophy
Francesco Gavazzi1, Brittany Charsar1, Eline Hamilton2
1Neurology Department, Children's Hospital of Philadelphia, Philadelphia, PA, USA.
Insights
This study details the natural history of pediatric-onset TUBB4A-related leukodystrophy, identifying distinct subtypes and predicting ambulation. Understanding these TUBB4A leukodystrophy subtypes is crucial for clinical care and future trials.
Area of Science:
- Neurology
- Genetics
- Pediatrics
Background:
- TUBB4A-related leukodystrophy is a rare genetic disorder affecting children.
- Understanding its natural history is vital for developing effective treatments and improving clinical trial design.
Purpose of the Study:
- To establish the natural history of pediatric-onset TUBB4A-related leukodystrophy.
- To stratify patients into clinically relevant subgroups for better understanding and future therapeutic development.
- To improve clinical trial readiness by defining disease progression and outcome measures.
Main Methods:
- A longitudinal study of 216 individuals with pediatric-onset TUBB4A-related leukodystrophy using medical records.
- Retrospective application of Gross Motor Function - Metachromatic Leukodystrophy (GMFC-MLD) and Communication Function Classification System (CFCS) scores.
- Survival analysis and decision tree modeling to identify predictors of functional outcomes and disease subtypes.
Main Results:
- Identified three distinct subgroups: early-infantile, late-infantile (non-p.Asp249Asn), and late-infantile (p.Asp249Asn).
- Genotype (p.Asp249Asn) and early motor milestones (sitting by 9 months) predicted ambulation by age 3 years.
- Individuals with the p.Asp249Asn mutation showed a more rapid functional decline despite comparable early abilities.
Conclusions:
- Distinct subtypes of TUBB4A-related leukodystrophy exist with varying clinical trajectories.
- Early identification of prognostic factors can guide clinical management and intervention strategies.
- This research provides a foundation for targeted therapies and improved clinical trial stratification for TUBB4A leukodystrophy.
Abstract:
We establish the natural history of pediatric-onset TUBB4A-related leukodystrophy to improve clinical trial readiness through a medical record-based longitudinal study. An international cohort of 216 individuals with pediatric-onset TUBB4A-related leukodystrophy was included. Demographic information and medical events were extracted from medical records or publications. Retrospective scores (Gross Motor Function - Metachromatic Leukodystrophy [GMFC-MLD] and Communication Function Classification System [CFCS]) were applied to assess function. Survival analysis distinguished differences in longitudinal neurocognitive function and time to event outcomes between subtypes. A decision tree predicted independent ambulation from early motor milestones. Genotype (p.Asp249Asn vs non-p.Asp249Asn) and independent sitting by age 9 months predicted ambulation by 3 years, and stratification into three subgroups: early-infantile (non- sitting by 9 months), late-infantile (normal early milestones without the common p.Asp249Asn mutation), and a cohort of p.Asp249Asn late-infantile onset individuals. Median age at symptom onset was 0.71 years (interquartile range: [0.33, 1.50]). Common symptoms at onset include delayed development and tone abnormalities (n = 125, 66.5 % and n = 77, 43.0 %). The most common medical complications included scoliosis (N = 51/142), hip dislocation (N = 30/101), and seizures (N = 51/163). The early-infantile more severely affected cohort had a greater prevalence of G-tube placement, scoliosis, and seizure compared to the late-infantile form (p < 0.01). Peak motor and communication abilities were comparable between the p.Asp249Asn and the late infantile cohorts. Despite the acquisition of early milestones, individuals with p.Asp249Asn showed a more rapid decline of functional abilities compared to other late infantile forms (log-rank p = 0.0002). Better understanding of TUBB4A-related leukodystrophy subtypes will improve clinical care, allow targeted preventive interventions, and permit disease stratification for future disease-modifying clinical trials.
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