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Premature Infants have Lower Gastric Digestion Capacity for Human Milk Proteins than Term Infants
Veronique Demers-Mathieu1, Yunyao Qu1, Mark A Underwood2
1Nutrition Program, School of Biological and Population Health Sciences, College of Public Health and Human Sciences, Oregon State University, Corvallis, OR.
Insights
Preterm infants exhibit reduced gastric protein digestion compared to term infants. Human milk proteases offer minimal contribution to this process, potentially impacting nutrient absorption in premature babies.
Area of Science:
- Neonatal nutrition
- Gastrointestinal physiology
- Infant digestion
Background:
- Premature infants may have impaired gastric protein digestion.
- The role of human milk proteases in infant digestion is not fully understood.
- Understanding these factors is crucial for optimizing nutrient acquisition in preterm neonates.
Purpose of the Study:
- To compare gastric protein digestive capacity between preterm and term infants.
- To determine the contribution of human milk proteases to gastric digestion in infants.
Main Methods:
- Collected human milk and gastric samples from preterm (24-32 wk GA) and term (38-40 wk GA) infants.
- Simulated gastric conditions (pH 4.5, 37°C for 2 hours) without pepsin (milkinc).
- Measured gastric protein digestion via proteolysis and protease activity; analyzed using two-way ANOVA and Tukey post hoc test.
Main Results:
- Gastric protein digestion measurements were significantly lower in preterm infants compared to term infants.
- Milk protease activity did not differ between human milk from mothers delivering preterm or term infants.
- Protease activity did not increase after simulated gastric incubation, indicating minimal contribution of milk proteases.
Conclusions:
- Preterm infants possess a lower gastric protein digestion capacity than term infants, potentially hindering nutrient acquisition.
- Human milk proteases contribute minimally to overall gastric digestion.
- The limited activity of milk proteases cannot compensate for the reduced gastric protein digestion capacity in preterm infants.
Objectives:
Whether premature infants have lower gastric protein digestive capacity than term infants and the extent to which human milk proteases contribute to overall gastric digestion are unknown and were investigated in this study.
Methods:
Human milk and infant gastric samples were collected from 16 preterm (24-32 wk gestational age) and 6 term (38-40 wk gestational age) mother-infant pairs within a range of 5 to 42 days postnatal age. For each pair, an aliquot of human milk was adjusted to pH 4.5 and incubated for 2 hours at 37 °C to simulate the gastric conditions without pepsin (milkinc). Their gastric protein digestion capacity was measured as proteolysis (free N-terminals) and protease activities. Two-way analysis of variance followed by Tukey post hoc test was applied to compare measurements between preterm and term infants as well as among human milk, milkinc, and gastric samples.
Results:
Measurements of gastric protein digestion were significantly lower in preterm infants than term infants. Overall milk protease activity did not differ between human milk samples from term- and preterm-delivering mothers. As protease activity did not increase with simulated gastric incubation, milk proteases likely contributed minimally to gastric digestion.
Conclusions:
Preterm infants have lower gastric protein digestion capacity than term infants, which could impair nutrient acquisition. Human milk proteases contribute minimally to overall gastric digestion. The limited activity of milk proteases suggests that these enzymes cannot compensate for the premature infant's overall lower gastric protein digestion.
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