The effects of breastfeeding versus formula-feeding on cerebral cortex maturation in infant rhesus macaques

Zheng Liu1, Martha Neuringer2, John W Erdman3

  • 1Division of Neuroscience, Oregon National Primate Research Center, Beaverton, OR, USA; Advanced Imaging Research Center, Oregon Health & Science University, Portland, OR, USA.

Neuroimage
|September 12, 2018
PubMed

Insights

Breastfeeding promotes brain maturation, enhancing corpus callosum and gray matter development in infant macaques. This study controlled for confounding factors, highlighting breastfeeding

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Nutritional Science

Background:

  • Breastfeeding is linked to better cognitive outcomes and brain development.
  • Human studies struggle to isolate nutritional effects from confounding factors like socioeconomic status and maternal care.
  • Human breast milk contains carotenoids like lutein and natural tocopherols, selectively deposited in the brain, which differ from infant formulas.

Purpose of the Study:

  • To investigate the effects of breastfeeding versus formula-feeding on infant brain maturation.
  • To examine the impact of lutein and natural RRR-α-tocopherol supplementation in infant formula.
  • To utilize a controlled non-human primate model to disentangle nutritional and environmental factors.

Main Methods:

  • Infant rhesus macaques were exclusively breastfed (mother-reared) or fed formula with varying lutein and α-tocopherol levels (nursery-reared).
  • Brain structural and diffusion Magnetic Resonance Imaging (MRI) and T2 relaxation time were measured at two, four, and six months of age.
  • Fractional anisotropy (FA) was analyzed to assess white matter integrity and maturation.

Main Results:

  • Breastfed infants showed higher fractional anisotropy (FA) in the corpus callosum and lower FA in the cerebral cortex compared to formula-fed infants at four and six months.
  • Specific cortical regions, including motor and prefrontal areas, exhibited the most significant differences.
  • No significant differences were observed between different formula-feeding groups, suggesting nutrition alone wasn't the primary driver of observed differences.

Conclusions:

  • Breastfeeding, independent of specific nutritional supplementation tested, promotes distinct patterns of brain maturation, particularly in the corpus callosum and cerebral cortex.
  • While this study couldn't pinpoint a single breast milk nutrient for formula, it demonstrated breastfeeding's positive impact on brain structure in a controlled setting.
  • Rearing environment (maternal vs. nursery) emerged as a significant factor potentially influencing brain structural differences observed between breastfed and formula-fed infants.

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