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Role of selected amino acids on plasma IGF-I concentration in infants
Manja Fleddermann1, Hans Demmelmair2, Veit Grote2
1Dr. von Hauner Children's Hospital, Ludwig Maximilians University of Munich, Munich, Germany. Manja.Fleddermann@med.uni-muenchen.de.
Insights
Infant formula composition impacts insulin-like growth factor-I (IGF-I) levels. Protein-reduced formulas with specific amino acids may enhance IGF-I and infant growth.
Area of Science:
- Pediatric Nutrition
- Endocrinology
- Growth Factors
Background:
- Insulin-like growth factor-I (IGF-I) is crucial for infant growth.
- IGF-I secretion is influenced by protein intake during early infancy.
- Understanding dietary impacts on IGF-I is vital for optimal infant development.
Purpose of the Study:
- To investigate the relationship between dietary protein, circulating amino acids, and plasma IGF-I levels in formula-fed infants.
- To assess the impact of a protein-reduced, amino acid-enriched infant formula on IGF-I and early growth.
- To compare IGF-I levels in infants receiving specialized formula, standard formula, and breast milk.
Main Methods:
- A randomized controlled trial involving 213 healthy formula-fed infants over 120 days.
- Infants received either a protein-reduced formula (IF) or a standard formula (CF).
- A breastfed (BF) group served as a reference; biochemical markers and growth were analyzed using path analysis.
Main Results:
- Plasma IGF-I concentrations were significantly higher in the IF group compared to the CF group at 120 days.
- Breastfed infants exhibited lower IGF-I levels than both formula groups.
- Specific amino acids, particularly tryptophan, showed a notable influence on IGF-I and insulin levels.
Conclusions:
- Infant formula protein concentration alone does not solely regulate IGF-I levels and growth.
- Specific components within infant formulas, such as selected amino acids, may directly or indirectly influence IGF-I via insulin.
- Protein-reduced formulas with tailored amino acid profiles may support better IGF-I concentrations and growth velocity.
Purpose:
Insulin-like growth factor-I (IGF-I) is related to growth and its secretion is modified by protein intake in early infancy. We examined the relationship of dietary protein and circulating amino acids on plasma IGF-I levels and early growth.
Methods:
Healthy formula-fed infants (n = 213) were randomly assigned to receive either a protein-reduced infant formula with alpha-lactalbumin-enriched whey and free tryptophan and phenylalanine (IF) or an isocaloric standard formula without free amino acids (CF) for the first 120 days of life. A group of breastfed (BF) infants was studied as a non-randomized reference cohort. Biochemical variables were measured shortly after birth (subpopulation) and at an age of 120 days. A path analysis was used to explore the relationship between IGF-I, insulin and amino acids. Results are derived from secondary analyses of a randomized controlled trial.
Results:
Plasma concentrations of IGF-I at 120 days were significantly higher in IF than in CF infants [58.5 (15.0) vs. 53.7 (9.95) ng/mL; p = 0.020]. BF infants showed lower IGF-I concentrations of 41.6 (10.7) ng/mL. All amino acids but Thr and Cit had a more marked effect on insulin than on IGF-I level. Considering weight, sex and feeding group, Trp explained an equal percentage of variance of IGF-I and insulin (total R 2 12.5 % of IGF-I and 12.3 % of insulin), while branched-chain AA explained an up to twofold higher variance of insulin than IGF-I. Compared to CF, IF explained 18.9 % of the IGF-I level (p = 0.03), while for insulin no direct effect was detectable.
Conclusion:
Higher IGF-I concentrations and growth velocities in infants receiving protein-reduced IF indicate that the protein concentration of an infant formula alone does not control IGF-I levels and growth. Other components (e.g., selected amino acids) of infant formulae might control directly or indirectly via insulin influence IGF-I.
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