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Published on: January 12, 2018
High vs. Low Initial Oxygen to Improve the Breathing Effort of Preterm Infants at Birth: Study Protocol for a
Janneke Dekker1, Stuart B Hooper2,3, Martin Giera4
1Department of Pediatrics, Leiden University Medical Center, Leiden, Netherlands.
Insights
Starting preterm infant resuscitation with higher oxygen concentrations may reduce hypoxia and improve respiratory effort. This approach aims to prevent prolonged hypoxia and hyperoxia, potentially lowering the risk of lung injury.
Area of Science:
- Neonatalogy
- Pediatric Respiratory Medicine
- Perinatal Research
Background:
- Preterm infants often require supplemental oxygen due to weak respiratory drive at birth, risking hypoxia and hyperoxia.
- Current guidelines recommend initial low oxygen concentrations (21-30%), potentially prolonging hypoxia and suppressing breathing effort.
- Hypoxia can inhibit respiratory drive in preterm infants, complicating initial stabilization.
Purpose of the Study:
- To evaluate the effect of initial higher versus lower fraction of inspired oxygen (FiO2) on respiratory effort in preterm infants.
- To determine if starting with a higher FiO2 (1.0 vs 0.3) can shorten hypoxia duration and prevent hyperoxia.
- To assess the impact on respiratory mechanics, duration of abnormal oxygen levels, and oxidative stress markers.
Main Methods:
- Multi-center randomized controlled trial involving 50 preterm infants (24-30 weeks gestational age).
- Infants randomized to initial FiO2 of 1.0 or 0.3 at birth, with subsequent titration based on oxygen saturation.
- Primary outcome: respiratory effort (average minute volume/kg) in the first 5 minutes; secondary outcomes include tidal volumes, hypoxia/hyperoxia duration, and oxidative stress markers.
Main Results:
- Respiratory effort, measured as average minute volume/kg, is the primary outcome.
- Secondary outcomes include inspired tidal volumes, rate of rise to maximum tidal volume, recruitment breaths, duration of hypoxia and hyperoxia, and plasma oxidative stress markers.
- Data on 8-iso-prostaglandin F2α levels will reflect true oxygen exposure.
Conclusions:
- Optimizing initial oxygenation strategy may enhance respiratory effort in preterm infants.
- A higher initial FiO2, followed by titration, could mitigate risks of both hypoxia and hyperoxia.
- This approach may reduce the need for intubation and mechanical ventilation, potentially lowering lung injury risk in high-risk preterm infants.
Abstract:
Background: Although most preterm infants breathe at birth, their respiratory drive is weak and supplemental oxygen is often needed to overcome hypoxia. This could in turn lead to hyperoxia. To reduce the risk of hyperoxia, currently an initial low oxygen concentration (21-30%) is recommended during stabilization at birth, accepting the risk of a hypoxic period. However, hypoxia inhibits respiratory drive in preterm infants. Starting with a higher level of oxygen could lead to a shorter duration of hypoxia by stimulating breathing effort of preterm infants, and combined with subsequent titration based on oxygen saturation, prolonged hyperoxia might be prevented. Study design: This multi-center randomized controlled trial will include 50 infants with a gestational age between 24 and 30 weeks. Eligible infants will be randomized to stabilization with an initial FiO2 of either 1.0 or 0.3 at birth. Hereafter, FiO2 will be titrated based on the oxygen saturation target range. In both groups, all other interventions during stabilization and thereafter will be similar. The primary outcome is respiratory effort in the first 5 min after birth expressed as average minute volume/kg. Secondary outcomes include inspired tidal volumes/kg, rate of rise to maximum tidal volume/kg, percentage of recruitment breaths with tidal volumes above 8 mL/kg, duration of hypoxia and hyperoxia and plasma levels of markers of oxidative stress (8-iso-prostaglandin F2α). Discussion: Current resuscitation guidelines recommend oxygen titration if infants fail to achieve the 25th percentile of the SpO2 reference ranges. It has become clear that, using this approach, most preterm infants are at risk for hypoxia in the first 5 min after birth, which could suppress the breathing effort. In addition, for compromised preterm infants who need respiratory support at birth, higher SpO2 reference ranges in the first minutes after birth might be needed to prevent prolonged hypoxia. Enhancing breathing effort by achieving an adequate level of oxygenation could potentially lead to a lower incidence of intubation and mechanical ventilation in the delivery room, contributing to a lower risk on lung injury in high-risk preterm infants. Measuring 8-iso-prostaglandin F2α could lead to a reflection of the true amount of oxygen exposure in both study groups.
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