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Lutein and preterm infants with decreased concentrations of brain carotenoids
Rohini Vishwanathan1, Matthew J Kuchan, Sarbattama Sen
1*Carotenoids and Health Laboratory, Jean Mayer US Department of Agriculture Human Nutrition Research Center on Aging, Tufts University, Boston, MA †Abbott Nutrition, Columbus, OH ‡Division of Newborn Medicine, Department of Pediatrics, Mother Infant Research Institute, Tufts Medical Center, Boston, MA.
Insights
Lutein and zeaxanthin are crucial carotenoids for infant brain development. Preterm infants show lower brain concentrations of these nutrients compared to term infants, highlighting the need for further research.
Area of Science:
- Neuroscience
- Nutritional Science
- Developmental Biology
Background:
- Lutein and zeaxanthin are dietary carotenoids vital for visual and cognitive development.
- Their distribution and concentration in the infant brain, particularly in relation to birth status, remain largely uncharacterized.
Purpose of the Study:
- To determine the distribution of carotenoids in infant brain tissues.
- To compare carotenoid concentrations between preterm and term infants.
Main Methods:
- Analysis of brain tissues from 30 infants (first 1.5 years of life) obtained from a national brain and tissue bank.
- Carotenoid extraction using lipid procedures and quantification via reverse-phase high-pressure liquid chromatography.
Main Results:
- Lutein, zeaxanthin, cryptoxanthin, and beta-carotene were identified in infant brain tissues, with lutein being predominant (59%).
- Preterm infants exhibited significantly lower concentrations of lutein, zeaxanthin, and cryptoxanthin compared to term infants.
- Feeding type influenced brain carotenoid levels, with higher lutein in term infants consuming formula containing lower cryptoxanthin.
Conclusions:
- The infant brain preferentially accumulates and maintains lutein, even with low dietary intake.
- Further research is essential to understand the impact of lutein on neural development, especially in preterm infants.
Objectives:
Lutein and zeaxanthin are dietary carotenoids that may influence visual and cognitive development. The objective of this study was to provide the first data on distribution of carotenoids in the infant brain and compare concentrations in preterm and term infants.
Methods:
Voluntarily donated brain tissues from 30 infants who died during the first 1.5 years of life were obtained from the Eunice Kennedy Shriver National Institute of Child Health and Human Development Brain and Tissue Bank. Tissues (hippocampus and prefrontal, frontal, auditory, and occipital cortices) were extracted using standard lipid extraction procedures and analyzed using reverse-phase high-pressure liquid chromatography.
Results:
Lutein, zeaxanthin, cryptoxanthin, and β-carotene were the major carotenoids found in the infant brain tissues. Lutein was the predominant carotenoid accounting for 59% of total carotenoids. Preterm infants (n = 8) had significantly lower concentrations of lutein, zeaxanthin, and cryptoxanthin in their brain compared with term infants (n = 22) despite similarity in postmenstrual age. Among formula-fed infants, preterm infants (n = 3) had lower concentrations of lutein and zeaxanthin compared with term infants (n = 5). Brain lutein concentrations were not different between breast milk-fed (n = 3) and formula-fed (n = 5) term decedents. In contrast, term decedents with measurable brain cryptoxanthin, a carotenoid that is inherently low in formula, had higher brain lutein, suggesting that the type of feeding is an important determinant of brain lutein concentrations.
Conclusions:
These data reveal preferential accumulation and maintenance of lutein in the infant brain despite underrepresentation in the typical infant diet. Further investigation on the impact of lutein on neural development in preterm infants is warranted.
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