Infant formula containing large, milk phospholipid-coated lipid droplets and dairy lipids affects cognitive

Lidewij Schipper1, Nana Bartke1, Maya Marintcheva-Petrova1

  • 1Danone Nutricia Research, Utrecht, Netherlands.

Frontiers in Nutrition
|September 21, 2023
PubMed

Insights

A novel infant formula designed to mimic human milk's lipid structure improved cognitive development in children. This formula, featuring specific lipid droplets, showed comparable results to breastfeeding in cognitive tests.

Area of Science:

  • Pediatric Nutrition
  • Neurodevelopmental Science
  • Food Science

Background:

  • Breastfeeding is linked to enhanced infant and child neurocognitive development.
  • Differences in lipid composition and milk fat globule structure between human milk and infant formula may contribute to these effects.

Purpose of the Study:

  • To assess the impact of an infant formula, engineered to replicate human milk's lipid characteristics, on children's cognitive performance.
  • To compare the neurocognitive outcomes of infants fed a specialized formula versus a standard formula and breast milk.

Main Methods:

  • A randomized controlled trial involving healthy term infants fed either a standard or a specialized "Concept" infant formula until 4 months of age.
  • A breastfed group served as a reference. Cognitive function was evaluated at 3, 4, and 5 years using standardized neurocognitive tests.
  • Erythrocyte fatty acid composition was analyzed at 3 months to assess nutritional status.

Main Results:

  • The specialized formula group exhibited a lower omega-6 to omega-3 long-chain polyunsaturated fatty acid ratio compared to the standard formula group.
  • At age 5, children in the specialized formula group performed comparably to the breastfed group on the Flanker test.
  • The "Concept" formula group also showed a significantly higher Dimensional Change Card Sort (DCCS) score compared to the standard formula group.

Conclusions:

  • Infant formula designed to mimic human milk's lipid composition and structure may positively influence neurocognitive development in children.
  • Potential mechanisms involve altered omega-3 fatty acid status in early infancy.
Abstract

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