Room air versus 100% oxygen for delivery room resuscitation of preterm neonates in low resource settings: A randomised, blinded, controlled trial.

Nishath A Liyakat, Praveen Kumar, Venkataseshan Sundaram

Journal: Journal of paediatrics and child health 2023;59(6):794-801

PMID: 37009908

Abstract

AIM

International Liaison Committee on Resuscitation (ILCOR-2020) report recommend starting delivery room resuscitation of all preterm neonates of <35 weeks' gestation with 21-30% oxygen. However, the correct initial oxygen concentration for resuscitation of preterm neonates in delivery room is inconclusive. In this blinded, randomised, controlled trial, we compared room air with 100% oxygen for oxidative stress and clinical outcomes in delivery room resuscitation of preterm neonates.

METHODS

Preterm neonates 28-33 weeks' gestation requiring positive pressure ventilation at birth were randomly allocated to room air or 100% oxygen. Investigators, outcome assessors and data analysts were blinded. Rescue 100% oxygen was used whenever trial gas failed (need for positive pressure ventilation >60 s or chest compression).

PRIMARY OUTCOME

Plasma 8-isoprostane levels at 4 h of age.

SECONDARY OUTCOMES

mortality by discharge, bronchopulmonary dysplasia, retinopathy of prematurity and neurological status at 40 weeks post-menstrual age. All subjects were followed till discharge. Intention to treat analysis was carried out.

RESULTS

A total of 124 neonates were randomised to room air (n = 59) or 100% oxygen (n = 65). Isoprostane level at 4 h was similar in both the groups (median (interquartile range): 280 (180-430) vs. 250 (173-360) pg/mL, P = 0.47). No difference was observed in mortality and other clinical outcomes. Room air group had higher treatment failures (27 (46%) vs. 16 (25%); relative risk (RR) 1.9 (1.1-3.1)) and took longer time to establish regular respiration (230 ± 231 vs. 182 ± 261, mean difference = 48 (40, 136) seconds).

CONCLUSIONS

In preterm neonates 28-33 weeks' gestation requiring resuscitation in the delivery room, room air (21%) is not the correct concentration to initiate resuscitation. Larger controlled trials involving multiple centres in low- and middle-income countries are immediately required for a conclusive answer.

© 2023 Paediatrics and Child Health Division (The Royal Australasian College of Physicians).

Address: Division of Neonatology, Department of Pediatrics, Postgraduate Institute of Medical Education and Research, Chandigarh, India.; Zulekha Hospital, Dubai, United Arab Emirates.

Link outs

Bant logo

© Copyright 2026, Nutrition Evidence

NED wishes to thank the following organisations for their support:

We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.