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Executive Functions and Long-Term Metabolic Control in Adults with Phenylketonuria (PKU)
Anne Tomm1, Alena G Thiele1, Carmen Rohde1
1Center for Pediatric Research Leipzig, Department of Women and Child Health, Hospital for Children and Adolescents, University Hospital Leipzig, 04103 Leipzig, Germany.
Insights
Phenylketonuria (PKU) management is key for cognitive function. Good metabolic control, especially in childhood, improves executive functions (EFs) in adults with PKU, highlighting lifelong monitoring needs.
Area of Science:
- Neuroscience
- Metabolic Disorders
- Genetics
Background:
- Phenylketonuria (PKU) is an inherited metabolic disorder due to phenylalanine hydroxylase deficiency.
- Elevated blood phenylalanine (Phe) levels in PKU can cause neurotoxic effects.
- Adults with PKU may experience executive function (EF) impairments despite treatment.
Purpose of the Study:
- To investigate the impact of metabolic control across life stages on EFs in adult PKU patients.
- To assess the influence of metabolic control on sociodemographic outcomes in PKU.
- To explore the relationship between Phe concentrations, Phe variability, and cognitive function.
Main Methods:
- Monocentric study of 36 early-diagnosed PKU patients (mean age 34.8 years).
- Executive functions assessed using the Test Battery for Attentional Performance (TAP) and Tower of London (TL-D).
- Analysis of metabolic data (childhood and adulthood Phe levels/variations) and sociodemographic information.
Main Results:
- PKU cohort exhibited EFs in the lower average range.
- Negative correlations found between EF performance and childhood/current Phe concentrations and Phe variation.
- Higher childhood Phe levels correlated with lower educational attainment.
Conclusions:
- Optimal cognitive development in PKU necessitates stringent metabolic control, particularly during early childhood.
- Maintaining low and stable Phe levels in adulthood is crucial for preserving executive functions.
- Lifelong monitoring and personalized therapies are essential for improving neurocognitive outcomes in PKU.
Abstract:
Background/Objectives: Phenylketonuria (PKU) is a rare inherited metabolic disorder caused by phenylalanine hydroxylase deficiency, resulting in highly elevated blood phenylalanine (Phe) concentrations, leading to neurotoxic effects. Despite advancements in treatment, adult patients with PKU may experience impairments in executive functions (EFs). This study investigates the influence of metabolic control across different life stages on EFs and sociodemographic outcomes in adult PKU. Methods: We conducted a monocentric study with 36 early-diagnosed and treated PKU patients (mean age: 34.8 years). EFs were assessed using the Test Battery for Attentional Performance (TAP) and the Tower of London (TL-D). Metabolic data were extracted from medical records, focusing on childhood and adulthood metabolic control, including Phe fluctuations. Sociodemographic data were collected via questionnaires. Statistical analyses explored relationships between EFs, metabolic control, and sociodemographic data. Results: EFs in the cohort were within the lower average range. Significant negative correlations could be observed between EF performance and dried blood Phe concentrations during childhood (ages 0-10 years) as well as current Phe concentrations and Phe variation. Elevated childhood Phe concentrations were associated with lower educational attainment. Sociodemographic characteristics, such as employment status and living arrangements, aligned with those of the general population. Conclusions: Optimal cognitive development in PKU requires good metabolic control, particularly in early childhood. In adulthood, while dietary restrictions may be relaxed, maintaining low and stable Phe concentrations is crucial for EFs. Consistent monitoring and tailored therapeutic approaches throughout life seem essential for optimizing metabolic and neurocognitive outcome in PKU.
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