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Published on: November 20, 2015
Apolipoprotein E, brain injury and neurodevelopmental outcome of children
M Korja1, M Ylijoki, H Lapinleimu
1Department of Neurosurgery, Helsinki University Central Hospital, Helsinki, Finland. mkorja@mqneurosurgery.com
Insights
Apolipoprotein E (APOE) gene variants did not significantly impact brain development or neurodevelopmental outcomes in very preterm or low birth weight infants. This study found no association between APOE genotypes and brain imaging or cognitive assessments in a vulnerable infant cohort.
Area of Science:
- Neuroscience
- Genetics
- Developmental Pediatrics
Background:
- Apolipoprotein E (APOE) is crucial for adult neurodegeneration, but its role in early brain development is unclear.
- Infants born very preterm or with very low birth weight are at higher risk for neurodevelopmental challenges.
Purpose of the Study:
- To investigate the influence of Apolipoprotein E (APOE) genotypes on neurodevelopment in a cohort of high-risk infants.
- To assess the association between APOE genotypes and brain structure/function, as well as cognitive outcomes.
Main Methods:
- A longitudinal study followed very preterm and/or very low birth weight children.
- Methods included serial cranial ultrasounds, brain MRI at term-equivalent age, and neurodevelopmental assessments at 2 and 5 years.
- APOE genotyping was performed on 322 children.
Main Results:
- Abnormal findings were noted in ultrasounds (50.8%) and MRIs (42.4%) of participants.
- Mild cognitive delay was observed in 12.3% at 2 years and 13.8% at 5 years.
- No significant associations were found between APOE genotypes and brain imaging results or neurodevelopmental outcomes.
Conclusions:
- APOE genotypes do not appear to significantly influence brain vulnerability or neurodevelopmental trajectories in infants born very preterm or with very low birth weight.
- Further research may explore other genetic or environmental factors impacting neurodevelopment in these high-risk populations.
Abstract:
Apolipoprotein E plays an important role in neurodegenerative processes in adulthood, whereas its neurodevelopmental role is uncertain. We aimed to study the effect of apolipoprotein E on neurodevelopment in a cohort liable to neurodevelopmental changes. The cohort consisted of very preterm (<32 gestational weeks) and/or very low birth weight (<1500 g) children, and the longitudinal follow-up protocol included sequential cranial ultrasounds during infancy, brain magnetic resonance imaging at term-equivalent age, neurological and cognitive assessment (Mental Developmental Index) at the corrected age of 2 years and cognitive and neuropsychological assessments (Wechsler Preschool and Primary Scale of Intelligence and Developmental NEuroPSYchological Assessment) at the chronological age of 5 years. Apolipoprotein E genotypes were determined from 322 children. Ultrasound and magnetic resonance imaging data were available for 321 (99.7%) and 151 (46.9%) children, respectively. Neurodevelopmental assessment data were available for 138 (42.9%) to 171 (53.1%) children. Abnormal findings in ultrasounds and magnetic resonance imaging were found in 163 (50.8%) and 64 (42.4%) children, respectively. Mild cognitive delay at the corrected age of 2 years and the chronological age of 5 years was suspected in 21 (12.3%) of 171 and 19 (13.8%) of 138 children, respectively. In the Developmental NEuroPSYchological Assessment, 47 (32.6%) of 144 children had significantly impaired performances in more than one study subtest. No associations between the apolipoprotein E genotypes and imaging findings or measured neurodevelopmental variables were found. Apolipoprotein E genotypes do not appear to have major impact on brain vulnerability or neurodevelopment in children.
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