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Investigating donor human milk composition globally to develop effective strategies for the nutritional care of
Maryanne T Perrin1, Kimberly Mansen2, Kiersten Israel-Ballard2
1Department of Nutrition, University of North Carolina Greensboro, Greensboro, NC, United States of America.
Insights
Donor human milk (DHM) is vital for premature infants when mother's milk isn't available. This study analyzes DHM
Area of Science:
- Nutritional science
- Neonatal care
- Public health
Background:
- Nearly 15 million infants are born prematurely each year, with a higher incidence in low and middle-income countries.
- Donor human milk (DHM) is recommended by the World Health Organization for premature infants to prevent necrotizing enterocolitis, especially when mother's milk is unavailable.
- Despite increasing DHM use, its nutritional composition and the impact of milk banking practices remain poorly understood.
Purpose of the Study:
- To establish comprehensive, geographically diverse nutrient profiles for DHM.
- To assess the influence of milk banking practices on DHM composition.
- To determine if DHM, when combined with commercial fortifiers, meets the nutritional needs of preterm infants.
Main Methods:
- A multi-site study involving eight milk banks across high, middle, and low-income countries.
- Analysis of a wide range of nutrients and bioactive factors in milk from 600 approved donors.
- Simulation of donor milk pooling (2-10 donors) to assess nutrient variability management.
- Evaluation of commercially available fortifiers with DHM against preterm nutrient recommendations.
Main Results:
- This section is to be filled once the study is completed and results are available.
Conclusions:
- Expected to enhance global nutritional care for preterm infants receiving DHM.
Background:
Globally, almost 15 million infants are born prematurely each year, disproportionately affecting low and middle-income countries. In the absence of mother's milk, the World Health Organization recommends using donor human milk (DHM) due to its protective effect against necrotizing enterocolitis, a life-threatening intestinal disorder. The use of DHM is increasing globally, with many low and middle-income countries integrating donor milk banks into their public health strategies to reduce neonatal mortality, yet very little is known about the nutritional composition of DHM. Additional knowledge gaps include how DHM composition is influenced by milk banking practices, and whether preterm nutrient recommendations are achieved when DHM is used with commercially available fortifiers.
Methods:
We designed a multi-site study with eight geographically diverse milk bank partners in high, middle, and low-income settings that will examine and compare a broad range of nutrients and bioactive factors in human milk from 600 approved milk bank donors around the world to create comprehensive, geographically diverse nutrient profiles for DHM. We will then simulate the random pooling of 2 to 10 donors to evaluate the impact of pooling as a potential strategy for milk banks to manage nutrient variability in DHM. Finally, we will evaluate whether commercially available fortifiers meet nutrient recommendations when used with DHM.
Discussion:
We expect that results from this study will improve nutritional care globally for the growing number of preterm infants who receive donor human milk.
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