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Published on: January 26, 2019
Effectiveness of Stabilization of Preterm Infants With Intact Umbilical Cord Using a Purpose-Built Resuscitation
Ronny Knol1, Emma Brouwer2, Frans J C M Klumper3
1Division of Neonatology, Department of Pediatrics, Erasmus MC University Medical Center, Rotterdam, Netherlands.
Insights
Physiological-based cord clamping (PBCC) stabilizes preterm infants by delaying cord clamping until respiratory stability is achieved. This approach, using the Concord resuscitation table, aims to be as effective as standard delayed cord clamping (DCC).
Area of Science:
- Neonatal resuscitation
- Perinatal medicine
- Pediatric critical care
Background:
- Preterm infants often require respiratory support due to immature lungs at birth.
- Early cord clamping before lung aeration can negatively impact cardiovascular function in neonates.
- Delaying cord clamping may enhance hemodynamic transition and placental transfusion in preterm infants.
Purpose of the Study:
- To evaluate if physiological-based cord clamping (PBCC) is non-inferior to time-based delayed cord clamping (DCC) for stabilizing preterm infants.
- To assess the effectiveness of a novel resuscitation approach using the Concord table for PBCC.
- To compare the time to respiratory stability between PBCC and DCC in extremely preterm infants.
Main Methods:
- A randomized controlled non-inferiority trial involving 64 infants born before 32 weeks of gestation.
- Infants were randomized to either PBCC (cord intact until respiratory stable) or standard DCC (clamped at 30-60 seconds).
- The Concord resuscitation table was used to support infants with an intact cord during PBCC.
Main Results:
- The primary outcome is the time to respiratory stability, defined by spontaneous breathing, heart rate, and oxygen saturation thresholds.
- Secondary outcomes include stabilization parameters, clinical outcomes of prematurity, and maternal safety.
- The study protocol is designed to assess stabilization effectiveness before larger trials on morbidity and mortality.
Conclusions:
- PBCC using the Concord table is being investigated as a potentially improved method for stabilizing preterm infants.
- This study will provide data on the effectiveness of PBCC in achieving respiratory stability.
- Future large-scale trials are planned to determine if PBCC reduces mortality and major morbidities in preterm neonates.
Abstract:
Background: Most preterm infants fail to aerate their immature lungs at birth and need respiratory support for cardiopulmonary stabilization. Cord clamping before lung aeration compromises cardiovascular function. Delaying cord clamping until the lung has aerated may be beneficial for preterm infants by optimizing hemodynamic transition and placental transfusion. A new purpose-built resuscitation table (the Concord) has been designed making it possible to keep the cord intact after preterm birth until the lung is aerated and the infant is respiratory stable and breathing [Physiological-Based Cord Clamping (PBCC)]. The aim of this study is to test the hypothesis whether stabilizing preterm infants by PBCC is at least as effective as the standard approach using time-based Delayed Cord Clamping (DCC). Study design: This is a randomized controlled non-inferiority study including 64 preterm infants born at <32 weeks of gestation. Infants will be randomized to either the PBCC approach or standard DCC. In case of PBCC, infants will be stabilized with an intact umbilical cord and the cord will only be clamped when the infant is considered respiratory stable, defined as the establishment of regular spontaneous breathing, a heart rate ≥100 bpm and oxygen saturation above 90% while using inspired fraction of oxygen (FiO2) < 0.40. The Concord will be used, which allows giving respiratory support with an intact umbilical cord. In the DCC group infants are clamped first before they are transferred to the standard resuscitation table for further treatment and stabilization. Cord clamping is time-based and delayed at 30-60 s. The primary outcome will be the time to respiratory stability of the infant, starting from birth. Secondary outcomes will include details of stabilization, important clinical outcomes of prematurity and maternal safety outcomes. Discussion: We expect that PBCC using the Concord may reduce major morbidities and mortality in preterm infants. The current study protocol will assess the effectivity of stabilization. Once effectivity of stabilization is confirmed, we will start a large multicenter randomized clinical trial to investigate whether PBCC reduces mortality and morbidity in preterm infants compared to the standard approach. Trial registration: Netherlands Trial Registry NTR7194, registered on April 20th, 2018.
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