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Published on: March 17, 2016
Development of White Matter Circuitry in Infants With Fragile X Syndrome
Meghan R Swanson1, Jason J Wolff2, Mark D Shen3
1Carolina Institute for Developmental Disabilities, University of North Carolina at Chapel Hill.
Insights
Fragile X syndrome (FXS) impacts white matter development in infants, showing stable differences from 6 months. These early brain changes correlate with nonverbal development, highlighting the gene
Area of Science:
- Neuroscience
- Genetics
- Developmental Biology
Background:
- Fragile X syndrome (FXS) is a leading genetic cause of intellectual disability.
- Early brain development in infants with FXS remains understudied.
- Understanding white matter development is crucial for early intervention.
Purpose of the Study:
- To investigate white matter development in infants with FXS.
- To compare brain development in FXS infants versus typically developing controls.
- To identify early neurobiological markers associated with FXS.
Main Methods:
- Longitudinal study of 27 infants with FXS and 73 controls (ages 6-24 months).
- Brain imaging using diffusion parameters (fractional anisotropy) to assess 19 white matter pathways.
- Statistical analysis using linear mixed effects modeling.
Main Results:
- Significant differences in 12 of 19 white matter tracts between FXS and control infants.
- Lower fractional anisotropy observed in FXS infants, stable from 6 months of age.
- Reduced fractional anisotropy in specific pathways correlated with lower nonverbal development.
Conclusions:
- FXS significantly affects early white matter development in human infants.
- Neurodevelopmental effects of FXS are evident as early as 6 months.
- Findings underscore the importance of the fragile X gene in early brain maturation.
Importance:
Fragile X syndrome (FXS) is a genetic neurodevelopmental disorder and the most common inherited cause of intellectual disability in males. However, there are no published data on brain development in children with FXS during infancy.
Objective:
To characterize the development of white matter at ages 6, 12, and 24 months in infants with FXS compared with that of typically developing controls.
Design, Setting, And Participants:
Longitudinal behavioral and brain imaging data were collected at 1 or more time points from 27 infants with FXS and 73 typically developing controls between August 1, 2008, and June 14, 2016, at 2 academic medical centers. Infants in the control group had no first- or second-degree relatives with intellectual or psychiatric disorders, including FXS and autism spectrum disorder.
Main Outcomes And Measures:
Nineteen major white matter pathways were defined in common atlas space based on anatomically informed methods. Diffusion parameters, including fractional anisotropy, were compared between groups using linear mixed effects modeling. Fiber pathways showing group differences were subsequently examined in association with direct measures of verbal and nonverbal development.
Results:
There were significant differences in the development of 12 of 19 fiber tracts between the 27 infants with FXS (22 boys and 5 girls) and the 73 infants in the control group (46 boys and 27 girls), with lower fractional anisotropy in bilateral subcortical-frontal, occipital-temporal, temporal-frontal, and cerebellar-thalamic pathways, as well as 4 of 6 subdivisions of the corpus callosum. For all 12 of these pathways, there were significant main effects between groups but not for the interaction of age × group, indicating that lower fractional anisotropy was present and stable from age 6 months in infants with FXS. Lower fractional anisotropy values in the uncinate fasciculi were correlated with lower nonverbal developmental quotient in the FXS group (left uncinate, F = 10.06; false discovery rate-corrected P = .03; right uncinate, F = 21.8; P = .004).
Conclusions And Relevance:
The results substantiate in human infants the essential role of fragile X gene expression in the early development of white matter. The findings also suggest that the neurodevelopmental effects of FXS are well established at 6 months of age.
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