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Visual development of human milk-fed preterm infants provided with extra energy and nutrients after hospital
Deborah L O'Connor1, Karen Weishuhn, Joanne Rovet
1Physiology and Experimental Medicine Program, The Hospital for Sick Children, Toronto, Canada.
Insights
Adding a multinutrient fortifier to human milk for preterm low birth weight infants after hospital discharge significantly improved their early visual development. Further research is needed to determine long-term neurodevelopmental effects.
Area of Science:
- Neonatal nutrition
- Pediatric neurodevelopment
- Human milk research
Background:
- Human milk (HM) is optimal for preterm low birth weight (LBW) infants post-discharge.
- Limited data exist on HM's sufficiency for hospital-acquired nutrition deficits.
- Neurodevelopmental outcomes in HM-fed LBW infants require further investigation.
Purpose of the Study:
- To determine if supplementing HM with extra energy and nutrients improves visual development in predominantly HM-fed LBW infants after discharge.
- Visual development served as a surrogate marker for neurodevelopment.
Main Methods:
- 39 predominantly HM-fed LBW infants were randomized at discharge.
- Intervention group received HM mixed with a multinutrient fortifier; control group received HM alone for 12 weeks.
- Visual acuity (grating acuity) and contrast sensitivity were assessed via sweep visual-evoked potential tests at 4 and 6 months corrected age.
Main Results:
- Infants receiving the multinutrient fortifier showed significantly higher grating acuity at 4 and 6 months corrected age (P = .02).
- No statistically significant differences were observed in contrast sensitivity between groups (P = .11).
Conclusions:
- Supplementing expressed breast milk with a multinutrient fortifier enhances early visual development in predominantly HM-fed LBW infants post-discharge.
- Further studies are warranted to explore the impact on other developmental domains and long-term neurodevelopment.
Background:
Human milk (HM) is the optimal way to nourish preterm low birth weight (LBW) infants after hospital discharge. However, there are few data on which to assess whether HM alone is sufficient to address hospital-acquired nutrition deficits, and no adequately powered studies have examined this question using neurodevelopment as an outcome. The purpose of this work was to determine whether adding extra energy and nutrients to the feedings of predominantly HM-fed LBW infants early after discharge improves their visual development. Visual development was used in this study as a surrogate marker for neurodevelopment.
Methods:
At discharge, 39 predominantly HM-fed LBW infants (750-1800 g, 1288 ± 288 g) were randomized to receive human milk alone (control) or around half of the HM received daily mixed with a multinutrient fortifier (intervention) for 12 weeks. Grating acuity (ie, visual acuity) and contrast sensitivity were assessed using sweep visual-evoked potential tests at 4 and 6 months corrected age.
Results:
At 4 and 6 months corrected age, intervention infants demonstrated higher grating acuity compared to those in the control group (intervention: 7.8 ± 1.3 and 9.7 ± 1.2 [cycles/degree] vs control 6.9 ± 1.2 and 8.2 ± 1.3, P = .02). Differences in contrast sensitivity did not reach statistical significance (P = .11).
Conclusion:
Adding a multinutrient fortifier to a portion of the expressed breast milk provided to predominantly HM-fed LBW infants early after discharge improves their early visual development. Whether these subtle differences in visual development apply to other aspects of development or longer term neurodevelopment are worthy of future investigation.
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