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Published on: July 14, 2023
[Apnea of prematurity: what's new?]
G Moriette1, S Lescure, M El Ayoubi
1Service de médecine néonatale, groupe hospitalier Cochin Saint-Vincent-de-Paul (AP-HP), université Paris-Descartes, 75014 Paris, France. guy.moriette@cch.aphp.fr
Insights
Apnea of prematurity, a common issue in infants born before 33 weeks, is often treated with caffeine citrate. This treatment not only reduces apnea but also lowers risks of bronchopulmonary dysplasia and cerebral palsy.
Area of Science:
- Neonatal Medicine
- Pediatric Pulmonology
- Developmental Neuroscience
Background:
- Apnea of prematurity affects most infants born before 33 weeks gestational age.
- It stems from physiological immaturity of respiratory control, but neonatal diseases can worsen its incidence.
- Prolonged apnea or apnea with hypoxemia/bradycardia poses risks to neurodevelopmental outcomes.
Purpose of the Study:
- To evaluate the safety and efficacy of caffeine citrate in treating apnea of prematurity.
- To assess the impact of caffeine citrate on major neonatal complications.
Main Methods:
- Review of recent evidence on caffeine citrate use for apnea of prematurity.
- Comparison of outcomes in infants treated with caffeine citrate versus controls.
Main Results:
- Caffeine citrate is safe and effective in reducing apnea incidence.
- Treated infants showed a decreased incidence of bronchopulmonary dysplasia, patent ductus arteriosus, and cerebral palsy.
- Nasal CPAP can be used as an adjunct therapy when caffeine citrate is insufficient.
Conclusions:
- Caffeine citrate is a beneficial treatment for apnea of prematurity, offering unexpected advantages.
- It improves neurodevelopmental outcomes by reducing associated complications.
- Combined therapy with nasal CPAP may be necessary in some cases.
Abstract:
Prematurity apnea remains a major clinical problem that requires treatment choices which are sometimes difficult. Prematurity apnea occurs in most infants of gestational age at birth less than 33 weeks. It is a developmental disorder which usually reflects a "physiological" immaturity of respiratory control. However, neonatal diseases may be associated and play an additive role, resulting in an increased incidence of apnea. Careful screening should therefore be performed in order to make sure that no other factor than immaturity is involved in the occurrence of apnea. Short apnea (less than 10s, without hypoxemia and bradycardia), due to immaturity, are not clinically relevant. More prolonged apnea, that last for more than 15 or 20s, and / or apnea associated with bradycardia or oxygen desaturation, results in short-term disturbances of cerebral haemodynamics and oxygenation, which may negatively impact on neurodevelopmental outcome. Evaluating the immediate severity of apnea and the risks that apnea may affect long-term outcome remains a challenge. The choice of treatments is based on a few evidences. Caffeine citrate, which reduces the incidence of apnea, has been used for decades. However, a thorough evaluation of risks and benefits of this medication has been performed only recently. Caffeine citrate was found to be safe and resulted in unexpected benefits. In treated infants, compared with controls, indeed, a decreased incidence of the following complications was recorded: bronchopulmonary dysplasia at 36 weeks of conceptional age, patent ductus arteriosus, cerebral palsy at 18 months of age. Nasal CPAP can be used in association with caffeine citrate, when the latter is not effective enough.
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