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Published on: March 17, 2016
White and gray matter brain development in children and young adults with phenylketonuria
Zoë Hawks1, Anna M Hood1, Dov B Lerman-Sinkoff2
1Department of Psychological & Brain Sciences, Campus Box 1125, Washington University, St. Louis, MO, United States.
Insights
Phenylketonuria (PKU) significantly impacts white matter (WM) development, with differences widening with age. Gray matter (GM) development trajectories were similar in individuals with PKU and controls, indicating WM is more affected.
Area of Science:
- Neuroscience
- Developmental Biology
- Metabolic Disorders
Background:
- Phenylketonuria (PKU) is a metabolic disorder affecting phenylalanine metabolism.
- Previous studies show white matter (WM) compromise in PKU, but gray matter (GM) development is less understood.
- Longitudinal studies examining both WM and GM trajectories in PKU are lacking.
Purpose of the Study:
- To compare longitudinal brain development in individuals with PKU and controls over three years.
- To investigate developmental trajectories of both WM and GM structures.
- To explore the relationship between phenylalanine (Phe) control, brain structure, and executive functions.
Main Methods:
- Longitudinal study comparing individuals with PKU (n=35) and typically-developing controls (n=71) aged 7-21 years.
- Utilized diffusion tensor imaging (DTI) and structural magnetic resonance imaging (MRI).
- Employed mediation analyses to assess relationships between Phe control, brain metrics, and executive abilities.
Main Results:
- Observed significant whole-brain and regional WM differences between individuals with PKU and controls, often worsening with age.
- Found no significant differences in GM development trajectories between the groups.
- Dietary Phe control, mediated by WM measures (MD), was linked to executive abilities in individuals with PKU.
Conclusions:
- Neuropathology in PKU is more pronounced in WM than GM, with WM differences increasing with age.
- WM integrity and Phe control are crucial for executive functions in individuals with PKU.
- Findings highlight the importance of early and consistent dietary management for cognitive outcomes in PKU.
Abstract:
Phenylketonuria (PKU) is a recessive disorder characterized by disruption in the metabolism of the amino acid phenylalanine (Phe). Prior research indicates that individuals with PKU have substantial white matter (WM) compromise. Much less is known about gray matter (GM) in PKU, but a small body of research suggests volumetric differences compared to controls. To date, developmental trajectories of GM structure in individuals with PKU have not been examined, nor have trajectories of WM and GM been examined within a single study. To address this gap in the literature, we compared longitudinal brain development over a three-year period in individuals with PKU (n = 35; 18 male) and typically-developing controls (n = 71; 35 male) aged 7-21 years. Using diffusion tensor imaging (DTI) and structural magnetic resonance imaging (MRI), we observed whole-brain and regional WM differences between individuals with PKU and controls, which were often exacerbated with increasing age. In marked contrast with trajectories of WM development, trajectories of GM development did not differ between individuals with PKU and controls, indicating that neuropathology in PKU is more prominent in WM than GM. Within individuals with PKU, mediation analyses revealed that whole-brain mean diffusivity (MD) and regional MD in the corpus callosum and centrum semiovale mediated the relationship between dietary treatment compliance (i.e., Phe control) and executive abilities, suggesting a plausible neurobiological mechanism by which Phe control may influence cognitive outcomes. Our findings clarify the specificity, timing, and cognitive consequences of whole-brain and regional WM pathology, with implications for treatment and research in PKU.
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