Abstract
AbstractMothers provide essential nutrients, including docosahexaenoic acid (DHA), an omega-3 fatty acid, during the perinatal period. DHA deficiency in perinatal mothers is linked to developmental abnormalities, especially in the central nervous system of the offspring; however, its specific impact on distinct events in fetal and neonatal brain development and prospective brain functions remains incompletely understood. We demonstrated using mice lackingAgpat3, a gene encoding the enzyme that synthesizes DHA-containing phospholipids (DHA-PLs), that maternal DHA-PL synthesis significantly contributes to the maternal– offspring DHA supply during the fetal period but not in infancy. Selective modulation of DHA-PL levels during fetal and postnatal periods inAgpat3-knockout mice showed that fetal stage-specific insufficiency in maternal DHA-PL supply potentially influences the neuropsychiatric phenotype in adult mice without affecting postnatal tissue DHA-PL levels, weight gain, and brain expansion. Collectively, enhancing maternal DHA-PL synthesis during pregnancy may help prevent prospective neuropsychiatric abnormalities in the offspring.
Publisher
Cold Spring Harbor Laboratory
Reference53 articles.
1. Omega-3 DHA and EPA for cognition, behavior, and mood: clinical findings and structural-functional synergies with cell membrane phospholipids;Altern Med Rev,2007
2. Basak S , Mallick R , Duttaroy AK . Maternal Docosahexaenoic Acid Status during Pregnancy and Its Impact on Infant Neurodevelopment. Nutrients 12, (2020).
3. Lipid composition of the normal human brain: gray matter, white matter, and myelin
4. Pakiet A , Jakubiak A , Czumaj A , Sledzinski T , Mika A . The effect of western diet on mice brain lipid composition. Nutr Metab (Lond ) 16, 81 (2019).
5. Polyunsaturated fatty acids and their metabolites in brain function and disease