Attenuated lipid peroxidation in preterm infants during subsequent doses of intravenous lipids

Olli M Pitkänen1, Päivi Luukkainen, Sture Andersson

  • 1Department of Cardiology, Hospital for Children and Adolescents, University of Helsinki, Helsinki, Finland. olli.open@netlife.fi

Biology of the Neonate
|January 7, 2004
PubMed

Insights

This study found that lipid peroxidation in preterm infants decreased when receiving intravenous lipids on consecutive days. Both olive oil-based and soybean oil + medium chain fatty acid (MCT) emulsions showed similar effects on lipid peroxidation.

Area of Science:

  • Neonatalogy
  • Nutritional Science
  • Biochemistry

Background:

  • Preterm infants are susceptible to oxidative stress.
  • Lipid emulsions are crucial for parenteral nutrition in neonates.
  • Understanding lipid peroxidation is vital for optimizing infant nutrition.

Purpose of the Study:

  • To compare in vivo lipid peroxidation between olive oil-based and soybean oil + medium chain fatty acid (MCT) lipid emulsions in preterm infants.
  • To assess the impact of repeated intravenous lipid administration on lipid peroxidation.

Main Methods:

  • A prospective intervention study involving 13 preterm infants.
  • Randomized crossover design with 3-hour infusions of two different lipid emulsions on consecutive days.
  • Measurement of exhaled pentane and plasma triglycerides (TGs) to assess lipid peroxidation and hypertriglyceridemia.

Main Results:

  • Exhaled pentane levels significantly increased during both lipid infusions compared to basal levels.
  • No significant difference in pentane levels was observed between the olive oil-based and soybean oil + MCT emulsions.
  • Pentane levels significantly decreased on the second day of lipid infusion, indicating reduced lipid peroxidation.
  • Plasma triglyceride levels did not differ significantly between the emulsions or study days.

Conclusions:

  • Intravenous lipid administration on consecutive days is associated with reduced lipid peroxidation in preterm infants.
  • Both tested lipid emulsions demonstrated similar effects on lipid peroxidation.
  • The observed reduction may be due to postnatal maturation or an adaptive response to decrease oxidative stress.

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