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.

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