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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.
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.
Abstract:
Breastfeeding is positively associated with several outcomes reflecting early brain development and cognitive functioning. Brain neuroimaging studies have shown that exclusively breastfed children have increased white matter and subcortical gray matter volume compared to formula-fed children. However, it is difficult to disentangle the effects of nutrition in breast milk from other confounding factors that affect brain development, particularly in studies of human subjects. Among the nutrients provided by human breast milk are the carotenoid lutein and the natural form of tocopherol, both of which are selectively deposited in brain. Lutein is the predominant carotenoid in breast milk but not in most infant formulas, whereas infant formulas are supplemented with the synthetic form of tocopherol. In this study, a non-human primate model was used to investigate the effects of breastfeeding versus formula-feeding, as well as lutein and natural RRR-α-tocopherol supplementation of infant formula, on brain maturation under controlled experimental conditions. Infant rhesus macaques (Macaca mulatta) were exclusively breastfed, or were fed infant formulas with different levels and sources of lutein and α-tocopherol. Of note, the breastfed group were mother-reared whereas the formula-fed infants were nursery-reared. Brain structural and diffusion MR images were collected, and brain T2 was measured, at two, four and six months of age. The mother-reared breastfed group was observed to differ from the formula-fed groups by possessing higher diffusion fractional anisotropy (FA) in the corpus callosum, and lower FA in the cerebral cortex at four and six months of age. Cortical regions exhibiting the largest differences include primary motor, premotor, lateral prefrontal, and inferior temporal cortices. No differences were found between the formula groups. Although this study did not identify a nutritional component of breast milk that could be provided to infant formula to facilitate brain maturation consistent with that observed in breastfed animals, our findings indicate that breastfeeding promoted maturation of the corpus callosum and cerebral cortical gray matter in the absence of several confounding factors that affect studies in human infants. However, differences in rearing experience remain as a potential contributor to brain structural differences between breastfed and formula fed infants.
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