Randomized controlled trial2020Open access

Maternal Docosahexaenoic Acid Status during Pregnancy and Its Impact on Infant Neurodevelopment

Basak S, Mallick R, Duttaroy AK

Nutrients · 86 citations

How it was studied

Design
Randomized controlled trial (indexed by PubMed)
Studied in
People, plus animal or lab work
Main outcome
Health markers and function

Who paid for it

Funding
Independent funding

Based on full-text disclosure statement.

Publication

Published
2020-11-25 · Nutrients · vol. 12 · issue 12 · p. 3615
Publisher
Multidisciplinary Digital Publishing Institute
Cited
135 citations · more than 98% of similar papers · 6.1× the field average
Impact
Top 10% most cited in its field
References
188 works
Access
Open access (journal) · CC-BY
Research areas
Fatty Acid Research and Health · Birth, Development, and Health · Infant Nutrition and Health
Keywords
Docosahexaenoic acid, Biology, Polyunsaturated fatty acid, Endocrinology, Placentation, Fetus, Internal medicine, Pregnancy, Neuroscience, Biochemistry, Fatty acid, Placenta, Medicine
MeSH
milk, human, humans, lutein, docosahexaenoic acids, micronutrients, double-blind method, child development, breast feeding, adult, infant, female, maternal nutritional physiological phenomena, young adult, biomarkers

3 authors

From IN, FI, NO

  • Sanjay BasakIndian Council of Medical Research
  • Rahul Dev MallickUniversity of Eastern Finland
  • Asim K. Duttaroy · correspondingUniversity of Oslo

Abstract

Dietary components are essential for the structural and functional development of the brain. Among these, docosahexaenoic acid, 22:6n-3 (DHA), is critically necessary for the structure and development of the growing fetal brain in utero. DHA is the major n-3 long-chain polyunsaturated fatty acid in brain gray matter representing about 15% of all fatty acids in the human frontal cortex. DHA affects neurogenesis, neurotransmitter, synaptic plasticity and transmission, and signal transduction in the brain. Data from human and animal studies suggest that adequate levels of DHA in neural membranes are required for maturation of cortical astrocyte, neurovascular coupling, and glucose uptake and metabolism. Besides, some metabolites of DHA protect from oxidative tissue injury and stress in the brain. A low DHA level in the brain results in behavioral changes and is associated with learning difficulties and dementia. In humans, the third trimester-placental supply of maternal DHA to the growing fetus is critically important as the growing brain obligatory requires DHA during this window period. Besides, DHA is also involved in the early placentation process, essential for placental development. This underscores the importance of maternal intake of DHA for the structural and functional development of the brain. This review describes DHA's multiple roles during gestation, lactation, and the consequences of its lower intake during pregnancy and postnatally on the 2019 brain development and function.

Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).

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