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Author Spotlight: Studying the Impact of Maternal Dietary Deficiencies on Long-Term Offspring Health Outcomes
Published on: June 28, 2024
Prenatal folate, homocysteine and vitamin B12 levels and child brain volumes, cognitive development and psychological
Charlotte L Ars1,2,3, Ilse M Nijs1,2, Hanan E Marroun1,2
1Generation R Study Group, Erasmus University Medical Center, Rotterdam 3000 CB, The Netherlands.
Insights
Prenatal folate deficiency in mothers is linked to smaller brain volume and poorer cognitive skills in school-aged children. High homocysteine also impacts language and visuo-spatial abilities, suggesting long-term effects on child development.
Area of Science:
- Neuroscience
- Developmental Biology
- Public Health
Background:
- Prenatal folate deficiency has been linked to impaired fetal brain development and later psychological issues.
- The long-term cognitive and morphological effects of maternal folate, vitamin B12, and homocysteine levels during pregnancy remain less understood.
Purpose of the Study:
- To investigate the association between prenatal maternal folate insufficiency, high homocysteine, and low vitamin B12 levels with brain morphology and cognitive/psychological outcomes in school-aged children.
Main Methods:
- Utilized data from the Generation R prospective cohort study.
- Included 256 Dutch children (6-8 years) with MRI brain scans.
- Assessed cognitive development (language, visuo-spatial) and psychological problems using standardized tests and parent reports.
Main Results:
- Low prenatal folate levels correlated with smaller total brain volume and poorer performance in language and visuo-spatial domains.
- High homocysteine levels predicted poorer performance in language and visuo-spatial domains.
- No significant associations were found between these factors and psychological problems.
Conclusions:
- Maternal folate insufficiency during early pregnancy has lasting effects on brain development.
- Folate and homocysteine levels are associated with cognitive performance in school-aged children, highlighting the importance of prenatal nutrition.
Abstract:
Previous studies have suggested that prenatal maternal folate deficiency is associated with reduced prenatal brain growth and psychological problems in offspring. However, little is known about the longer-term impact. The aims of this study were to investigate whether prenatal maternal folate insufficiency, high total homocysteine levels and low vitamin B12 levels are associated with altered brain morphology, cognitive and/or psychological problems in school-aged children. This study was embedded in Generation R, a prospective population-based cohort study. The study sample consisted of 256 Dutch children aged between 6 and 8 years from whom structural brain scans were collected using MRI. The mothers of sixty-two children had insufficient (<8 nmol/l) plasma folate concentrations in early pregnancy. Cognitive development was assessed by the Snijders-Oomen Niet-verbale intelligentietest - Revisie and the NEPSY-II-NL. Psychological problems were assessed at age 6 years using the parent report of the Child Behavior Checklist. Low prenatal folate levels were associated with a smaller total brain volume (B -33·34; 95 % CI -66·7, 0·02; P=050) and predicted poorer performance on the language (B -0·28; 95 % CI -0·52, -0·04; P=0·020) and visuo-spatial domains (B -0·27; 95 % CI -0·50, -0·04; P=0·021). High homocysteine levels (>9·1 µmol/l) predicted poorer performance on the language (B -0·31; 95 % CI -0·56, -0·06; P=0·014) and visuo-spatial domains (B -0·36; 95 % CI -0·60, -0·11; P=0·004). No associations with psychological problems were found. Our findings suggest that folate insufficiency in early pregnancy has a long-lasting, global effect on brain development and is, together with homocysteine levels, associated with poorer cognitive performance.
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