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Effects of targeting lower versus higher arterial oxygen saturations on death or disability in preterm infants

Lisa M Askie1, Brian A Darlow2, Peter G Davis3

  • 1NHMRC Clinical Trials Centre, University of Sydney, Locked Bag 77, Camperdown, NSW, Australia, 2050.

Insights

Targeting lower oxygen saturation levels (SpO₂) in extremely preterm infants did not significantly affect death or major disability rates. However, lower SpO₂ ranges increased mortality and necrotizing enterocolitis risk while decreasing retinopathy of prematurity.

Area of Science:

  • Neonatalogy
  • Respiratory Medicine
  • Critical Care

Background:

  • Supplemental oxygen use in extremely preterm infants lacks consensus on optimal oxygen saturation (SpO₂) ranges.
  • Concerns exist regarding neurodevelopmental impairment or death with lower SpO₂ targets versus severe retinopathy or chronic lung disease with higher targets.
  • Widespread use of pulse oximetry highlights the need for evidence-based SpO₂ targeting in preterm infants.

Purpose of the Study:

  • To evaluate the effects of targeting lower versus higher oxygen saturation ranges on mortality and major morbidities in extremely preterm infants.
  • To determine if these effects differ based on specific infant characteristics or care factors.

Main Methods:

  • Conducted a systematic search of randomized controlled trials (RCTs) using Cochrane Neonatal and other databases.
  • Included RCTs involving infants born at <28 weeks' gestation, targeting SpO₂ ranges ≤90% or >90% for at least two weeks.
  • Extracted data using standard Cochrane Neonatal methods and performed meta-analyses with Review Manager 5 software.

Main Results:

  • Five trials with 4965 infants were included, with high-quality evidence for key outcomes.
  • No significant difference in the composite outcome of death or major disability between lower (85-89%) and higher (91-95%) SpO₂ targets.
  • Lower SpO₂ targets significantly increased mortality (RR 1.16) and necrotizing enterocolitis (RR 1.24) but decreased retinopathy of prematurity requiring treatment (RR 0.72).

Conclusions:

  • Targeting lower SpO₂ ranges (85-89%) in extremely preterm infants did not significantly impact death or major disability but increased mortality and necrotizing enterocolitis.
  • A lower SpO₂ target significantly reduced the incidence of retinopathy of prematurity requiring treatment.
  • Local settings should be considered when determining optimal SpO₂ targeting policies due to trade-offs between benefits and harms.
Abstract

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