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Effect of dietary ribonucleotides on infant immune status. Part 2: Immune cell development
Rachael H Buck1, Debra L Thomas, Timothy R Winship
1Abbott Laboratories, Ross Products Division, 3300 Stelzer Rd., Columbus, OH 43219, USA. rachael.buck@abbott.com
Insights
Dietary ribonucleotides in infant formula promote T-cell maturation and influence natural killer (NK) cell subsets in the first year of life. Supplemented formula immune profiles resembled those of human milk formula (HMF) more closely than unsupplemented formula.
Area of Science:
- Immunology
- Pediatric Nutrition
- Cell Biology
Background:
- Infant nutrition plays a critical role in immune system development.
- Dietary components can modulate immune cell phenotypes and functions.
- Ribonucleotides are naturally present in human milk and may influence infant immunity.
Purpose of the Study:
- To investigate the impact of supplemental ribonucleotides in infant formula on immune cell development during the first year of life.
- To compare immune cell profiles in infants fed formula with or without ribonucleotides to those fed human milk formula (HMF).
Main Methods:
- A 12-month, double-blind, multicenter trial involving term infants fed formula with (FN) or without (F) supplemental ribonucleotides.
- Concurrent enrollment of a nonrandomized human milk formula (HMF) cohort.
- Flow cytometry analysis of 88 immune blood cell types.
- Statistical analysis using MANOVA, ANOVA, and RMA with adjustments for multiple comparisons.
Main Results:
- Ribonucleotide supplementation (FN) altered T-cell and natural killer (NK) cell subpopulations compared to unsupplemented formula (F).
- FN group showed increased percentages of memory/effector T-cells, Th2 cells, and specific NK cell subsets.
- Percentages of naive helper T-cells and certain NK-T cells were lower in the FN group compared to F.
- Immune cell profiles in the FN group were comparable to or more similar to the HMF group than the F group.
Conclusions:
- Dietary ribonucleotides in infant formula support enhanced T-cell maturation and modulate immunoregulatory NK cell subsets.
- Ribonucleotide supplementation in infant formula can lead to immune cell profiles that more closely resemble those of infants fed human milk formula.
Abstract:
The objective of this study was to determine whether dietary ribonucleotides alter immune cell phenotypes or function in the first year of life. Newborn term infants in a double-blind, 12-mo, multicenter trial were randomized to cow milk formula groups with (FN, n = 138) or without (F, n = 147) 72 mg/L supplemental ribonucleotides. A nonrandomized HMF cohort (n = 192) was concurrently enrolled. Eighty-eight immune blood cell types were characterized by flow cytometry. Data were analyzed by multivariate ANOVA (MANOVA), ANOVA, and repeated measures analysis (RMA), with adjustments made for multiple comparisons. Ribonucleotide feeding changed subpopulations of T and natural killer (NK) cells. FN had higher numbers and percentages of memory/effector (M/E) cytotoxic/suppressor (CD45R0(+)CD8(+), RMA) T, Fas(+) M/E (CD45R0(+)CD95(+)CD3(+), 6 mo) T, and CD56(+)CD16(-) NK cells (CD56(+)CD16(-)CD3(-)CD8(-), 12 mo), and higher percentages of M/E helper (CD45R0(+)CD4(+), RMA) T, Tc1 (IFN gamma(+)CD4(-)CD3(+), RMA), total interferon (IFN)gamma T (IFN gamma(+)CD4(+/-)CD3(+), RMA), Th2 (IL-4(+)CD4(+)CD3(+), 7 mo), and CD57(+) NK-T cells (CD57(+)CD56(-)CD3(+), 6 mo, 7 mo) compared with F. Percentages of naive helper T (CD45RA(+)CD4(+), 12 mo) and numbers and percentages of CD56(+) NK-T cells (CD56(+)CD16(-)CD3(+)CD8(-), 2 mo, 6 mo) were lower in FN than F. Percentages of M/E cytotoxic/suppressor, Th2, and CD56(+)CD16(-) NK cells in FN were significantly higher than F but were not different from HMF, whereas F was significantly lower than HMF. Ribonucleotide supplementation of infant formula supported increased T-cell maturation and affected immunoregulatory NK cell subsets. These FN-associated immune cell profiles either did not differ from those infants fed HMF or tended to be more like those fed HMF than those fed F.
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