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Evaluating the Effect of Random Multi‐Donor Pooling on the Nutritional Variability in Donor Human Milk Using Computer Modeling

Bibliographic Data

ID15535588
AuthorsR Mitchell Smith (University of North Carolina at Greensboro), Scott J Richter (0000-0001-9558-4130, University of North Carolina at Greensboro), Scott Richter (Department of Mathematics and Statistics University of North Carolina Greensboro Greensboro North Carolina USA), Esther F Iwayemi (University of North Carolina at Greensboro), Kimberly Mansen (0000-0002-2015-2066, Program for Appropriate Technology in Health), Kiersten Israel‐Ballard (0000-0002-3489-8213, Program for Appropriate Technology in Health), Daniela Hampel (0000-0003-0288-7680, Western Human Nutrition Research Center), Setareh Shahab-Ferdows (0000-0002-5058-4935, Western Human Nutrition Research Center), Lindsay H Allen (0000-0002-8729-5213, Department of Nutrition, Institute for Global Nutrition University of California Davis California USA), Lee‐ann H Allen (0000-0001-8929-6968, Western Human Nutrition Research Center), Lars Bode (0000-0002-9914-9571, Western Human Nutrition Research Center), Maryanne T Perrin (0000-0002-1645-8310, University of North Carolina at Greensboro, corresponding author)
Year2026
Volume22
Issue1
Pagese70158-e70158
Publication date2026-01-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueMaternal and Child Nutrition (JOURNAL)
Journal identifiersISSN: 1740-8695 • E-ISSN: 1740-8709
PublisherWiley (PUBLISHER • GB)
DOI10.1111/mcn.70158
PMID41503733
OpenAlexW7118929791
LanguageEN
References cited20

Protein and fat concentrations in donor human milk (DHM) can vary twofold to threefold and are influenced by the number of unique donors per pool. The aim of this study was to broadly characterize how the number of donors (2-10) randomly combined into a pool during milk bank processing influenced the variability of macronutrients, vitamins, minerals, and bioactive factors in DHM. The minimum number of donors required for 80% of the pools to meet pre-defined targets for true protein, fat, and disialyllacto-N-tetraose (DSLNT) was also evaluated. Monte Carlo simulation was used to create models that accounted for donor lifetime donation volume and milk bank production constraints. Variability in nutrients was quantified as a Nutrient Inequality Index (NII) which was computed as the ratio of the 90th percentile to the 10th percentile for each simulation. Random multi-donor pooling of 2-10 donors produced lower variability in DHM macronutrients than most vitamins and minerals. A priori targets of 0.9 g/dL of true protein, 3.5 g/dL of fat, and 210 μg/L of DSLNT could not be achieved with any random pooling scenario. The NII for lactose stabilized at less than 1.1 when there were 3+ donors per pool, while the NII for fat and true protein stabilized at less than 1.3 when there were 5+ donors per pool. The NII exceeded 1.5, even at 10 donors per pool, for several micronutrients including zinc, copper, sodium, iron, biotin, riboflavin, B6, B12, and pantothenic acid

Donation · Lactose · Micronutrient · Nutrient · Percentile · Pooling · Breastfeeding Practices and Influences · Infant Nutrition and Health · Milk Quality and Mastitis in Dairy Cows

Citation velocityhistorical
Highly citedNo

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