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Updated: Jul 10, 2025

Author Spotlight: Studying the Impact of Maternal Dietary Deficiencies on Long-Term Offspring Health Outcomes
Published on: June 28, 2024
Choline and Betaine Levels in Plasma Mirror Choline Intake in Very Preterm Infants
Michaela Minarski1, Christoph Maas1, Christine Heinrich1
1Department of Neonatology, University Children's Hospital, Tübingen University Hospital, 72076 Tübingen, Germany.
Insights
Very low birth weight infants have lower choline levels due to insufficient intake. Increasing choline intake through breast milk or fortifiers may improve plasma concentrations and support development.
Area of Science:
- Nutritional Science
- Neonatal Development
- Biochemistry
Background:
- Choline is vital for cell membranes and methyl transfers, crucial for fetal development.
- Preterm infants, especially very low birth weight infants (VLBWI), have higher choline needs.
- Breast milk choline content is lower after preterm delivery, and current formulas/fortifiers are insufficient.
Purpose of the Study:
- To investigate if increased enteral choline intake elevates plasma choline, betaine, and phosphatidylcholine in VLBWI.
- To assess the relationship between choline intake and plasma concentrations in this population.
Main Methods:
- Secondary analysis of a randomized controlled trial on VLBWI growth.
- Measurement of total choline in breast milk from 33 mothers.
- Correlation of enteral choline intake (from breast milk, formula, fortifier) with plasma concentrations.
Main Results:
- Plasma choline and betaine levels in VLBWI showed a direct correlation with enteral choline intake.
- Despite correlation, administered choline was insufficient to reach physiological (fetus-like) plasma concentrations.
Conclusions:
- Optimizing maternal choline status and milk/fortifier choline content is recommended.
- This may help increase plasma choline, address the choline deficit, and enhance VLBWI growth and development.
Abstract:
Choline is essential for cell membrane formation and methyl transfer reactions, impacting parenchymal and neurological development. It is therefore enriched via placental transfer, and fetal plasma concentrations are high. In spite of the greater needs of very low birth weight infants (VLBWI), choline content of breast milk after preterm delivery is lower (median (p25-75): 158 mg/L (61-360 mg/L) compared to term delivery (258 mg/L (142-343 mg/L)). Even preterm formula or fortified breast milk currently provide insufficient choline to achieve physiological plasma concentrations. This secondary analysis of a randomized controlled trial comparing growth of VLBWI with different levels of enteral protein supply aimed to investigate whether increased enteral choline intake results in increased plasma choline, betaine and phosphatidylcholine concentrations. We measured total choline content of breast milk from 33 mothers of 34 VLBWI. Enteral choline intake from administered breast milk, formula and fortifier was related to the respective plasma choline, betaine and phosphatidylcholine concentrations. Plasma choline and betaine levels in VLBWI correlated directly with enteral choline intake, but administered choline was insufficient to achieve physiological (fetus-like) concentrations. Hence, optimizing maternal choline status, and the choline content of milk and fortifiers, is suggested to increase plasma concentrations of choline, ameliorate the choline deficit and improve growth and long-term development of VLBWI.
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