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Nutrition after preterm birth and adult neurocognitive outcomes
Sara Sammallahti1,2,3, Eero Kajantie2,3,4, Hanna-Maria Matinolli3
1Department of Psychology and Logopedics, University of Helsinki, Helsinki, Finland.
Insights
Higher early nutrition in preterm infants is linked to better adult cognitive function. Adequate energy and human milk intake during the first nine weeks after birth positively impacts neurodevelopmental outcomes.
Area of Science:
- Neonatalogy
- Neurodevelopmental Pediatrics
- Nutritional Science
Background:
- Preterm birth (<37 weeks) is associated with impaired neurocognitive functioning.
- Faster postnatal growth, promoted by nutrition, is linked to better cognitive abilities.
- The long-term impact of specific nutrient variations on neurodevelopment remains unclear.
Purpose of the Study:
- To investigate if early nutrient intake in very low birth weight preterm infants predicts long-term cognitive performance.
- To examine the association between energy, macronutrient, and human milk intake and adult cognitive abilities.
Main Methods:
- Study included 86 participants from the Helsinki Study of Very Low Birth Weight Adults.
- Nutrient intake (energy, macronutrients, human milk) was assessed during the first nine weeks post-preterm birth.
- Cognitive ability was evaluated using standardized tests at approximately 25 years of age.
Main Results:
- Higher energy intake (3-6 weeks) correlated with increased adult IQ (0.21 SD per 10 kcal/kg/day).
- Increased carbohydrate and fat intake (3-6 weeks) and human milk energy intake (3-9 weeks) were associated with higher adult IQ.
- Neonatal complications, like intraventricular hemorrhage, affected both nutrition and cognitive outcomes, attenuating associations.
Conclusions:
- Elevated energy and human milk intake in preterm neonates predicts enhanced adult neurocognitive abilities.
- Postnatal nutrition plays a crucial role in mediating the relationship between neonatal illness and long-term neurodevelopmental outcomes.
- Understanding the impact of early nutrition is vital for optimizing neurocognitive outcomes in very low birth weight preterm infants.
Background:
Preterm birth (<37 gestational weeks) poses a risk of poorer neurocognitive functioning. Faster growth after preterm birth predicts better cognitive abilities and can be promoted through adequate nutrition, but it remains unknown whether variations in nutrient intakes translate into long-term benefits for neurodevelopment.
Methods:
In 86 participants of the Helsinki Study of Very Low Birth Weight Adults (birthweight <1500g), we examined if higher intakes of energy, macronutrients, and human milk during the first nine weeks after preterm birth predict performance in tests of cognitive ability at 25.1 years of age (SD = 2.1).
Results:
10 kcal/kg/day higher total energy intake at 3 to 6 weeks of age was associated with 0.21 SD higher adult IQ (95% Confidence Interval [CI] 0.07-0.35). Higher carbohydrate and fat intake at 3-6 weeks, and higher energy intake from human milk at 3-6 and at 6-9 weeks were also associated with higher adult IQ: these effect sizes ranged from 0.09 SD (95% CI 0.01-0.18) to 0.34 SD (0.14-0.54) higher IQ, per one gram/kg/day more carbohydrate and fat, and per 10 kcal/kg/day more energy from human milk. Adjustment for neonatal complications attenuated the associations: intraventricular hemorrhage, in particular, was associated with both poorer nutrition and poorer IQ.
Conclusion:
In preterm neonates with very low birth weight, higher energy and human milk intake predict better neurocognitive abilities in adulthood. To understand the determinants of these infants' neurocognitive outcome, it seems important to take into account the role of postnatal nutrition, not just as an isolated exposure, but as a potential mediator between neonatal illness and long-term neurodevelopment.
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