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Postnatal Nutrition to Improve Brain Development in the Preterm Infant: A Systematic Review From Bench to Bedside
Lisa M Hortensius1, Ruurd M van Elburg2,3, Cora H Nijboer4
1Department of Neonatology, University Medical Center Utrecht, Utrecht University, Utrecht, Netherlands.
Insights
Nutritional supplementation in preterm infants shows promise in animal studies but lacks clear long-term benefits in clinical trials for improving neurodevelopmental outcomes. Further research with better models and extended follow-up is needed.
Area of Science:
- Neonatal Neurology
- Nutritional Science
- Developmental Pediatrics
Background:
- Preterm infants face high risks of brain injury and developmental issues.
- Maternal breast milk, while ideal, often requires supplementation to meet preterm infants' increased nutritional needs.
- Optimizing nutrition is critical for healthy brain development in this vulnerable population.
Approach:
- A comprehensive literature review was conducted, analyzing both pre-clinical animal models and randomized controlled trials (RCTs).
- Searches focused on studies published between 2008-2018 examining single nutritional components (lipids, proteins, vitamins, minerals, etc.).
- Outcomes assessed included neonatal brain injury, brain development, and neurodevelopmental outcomes in preterm infants and animal models.
Key Points:
- Pre-clinical studies consistently demonstrated positive effects of nutritional supplementation on brain injury and neurodevelopment.
- Clinical trials explored supplementation with amino acids, proteins, lipids, probiotics, prebiotics, vitamins, and minerals.
- While some nutrients showed short-term promise in clinical settings, no significant long-term neurodevelopmental benefits were consistently observed.
Conclusions:
- Despite promising pre-clinical data, the translation of nutritional interventions to significant long-term clinical benefits in preterm infants remains unproven.
- Current research limitations include a focus on single nutrients and insufficient long-term follow-up in clinical trials.
- Development of more relevant animal models and extended clinical trial monitoring are essential for advancing nutritional therapies for preterm infants.
Abstract:
Background: Preterm infants are at high risk for Encephalopathy of Prematurity and successive adverse neurodevelopmental outcome. Adequate nutrition is crucial for healthy brain development. Maternal breast milk is first choice of post-natal enteral nutrition for preterm infants. However, breast milk contains insufficient nutrient quantities to meet the greater nutritional needs of preterm infants, meaning that supplementation is recommended. Aim: To provide an overview of current literature on potential nutritional interventions for improvement of neurodevelopmental outcome in preterm infants, by taking a bench to bedside approach from pre-clinical models of neonatal brain injury to randomized controlled clinical trials (RCTs) in preterm infants. Methods: Separate clinical and pre-clinical searches were performed in Medline and Embase for English written papers published between 08/2008 and 08/2018 that studied a single nutritional component. Papers were included if one of the following components was studied: lipids, carbohydrates, proteins, vitamins, minerals, probiotics, prebiotics, oligosaccharides, fatty acids, or amino acids, with brain injury, brain development or neurodevelopmental outcome as outcome measure in preterm infants (gestational age <32 weeks and/or birth weight <1,500 g) or in animal models of neonatal brain injury. Results: In total, 2,671 pre-clinical studies and 852 RCTs were screened, of which 24 pre-clinical and 22 RCTs were included in this review. In these trials supplementation with amino acids and protein, lipids, probiotics (only clinical), prebiotics (only clinical), vitamins, and minerals was studied. All included pre-clinical studies show positive effect of supplementation on brain injury and/or neurodevelopment. Although some nutrients, such as glutamine, show promising short term outcome in clinical studies, no evident long term effect of any supplemented nutrient was found. Main limitations were inclusion of studies no older than 10 years at time of search and studies that focused on single nutritional components only. Conclusion: Even though many pre-clinical trials demonstrate promising effects of different nutritional interventions on reducing brain injury and/or improving neurodevelopmental outcome, these positive effects have so far not evidently been demonstrated in RCTs. More clinically relevant animal models and long term follow up after clinical trials are needed to move novel nutritional therapies from bench to bedside of preterm infants.
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