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Oral propranolol for retinopathy of prematurity: risks, safety concerns, and perspectives
Luca Filippi1, Giacomo Cavallaro, Paola Bagnoli
1Neonatal Intensive Care Unit, Medical Surgical Fetal-Neonatal Department, "A. Meyer" University Children's Hospital, Florence, Italy.
Insights
Oral propranolol shows promise in reducing retinopathy of prematurity (ROP) progression in preterm infants. However, careful monitoring is crucial due to potential serious adverse effects like hypotension and bradycardia.
Area of Science:
- Neonatology
- Ophthalmology
- Pharmacology
Background:
- Retinopathy of prematurity (ROP) is a significant cause of visual impairment in preterm infants.
- Early-phase ROP requires effective interventions to prevent severe visual loss.
Purpose of the Study:
- To assess the safety and efficacy of oral propranolol in treating early-stage ROP in preterm newborns.
- To evaluate propranolol's impact on ROP progression and related biomarkers.
Main Methods:
- A randomized controlled trial involving 52 preterm infants with Stage 2 ROP.
- Infants received either oral propranolol (0.25 or 0.5 mg/kg/6 hours) plus standard care or standard care alone.
- Safety was monitored via hemodynamics, respiratory function, and lab tests; efficacy assessed by ROP progression, laser/bevacizumab treatments, and soluble E-selectin levels.
Main Results:
- Propranolol significantly reduced progression to Stage 3 ROP and Stage 3 plus (48% and 58% risk reduction, respectively).
- Fewer laser treatments and reduced need for intravitreal bevacizumab were observed (52% risk reduction).
- A 100% risk reduction for progression to Stage 4 ROP and lower soluble E-selectin levels were noted, alongside serious adverse events in 5 infants.
Conclusions:
- Oral propranolol appears effective in mitigating ROP progression in preterm infants.
- Safety concerns, including hypotension and bradycardia, necessitate careful patient monitoring during treatment.
Objective:
To evaluate safety and efficacy of oral propranolol administration in preterm newborns affected by an early phase of retinopathy of prematurity (ROP).
Study Design:
Fifty-two preterm newborns with Stage 2 ROP were randomized to receive oral propranolol (0.25 or 0.5 mg/kg/6 hours) added to standard treatment or standard treatment alone. To evaluate safety of the treatment, hemodynamic and respiratory variables were continuously monitored, and blood samples were collected weekly to check for renal, liver, and metabolic balance. To evaluate efficacy of the treatment, the progression of the disease (number of laser treatments, number of bevacizumab treatments, and incidence of retinal detachment) was evaluated by serial ophthalmologic examinations, and plasma soluble E-selectin levels were measured weekly.
Results:
Newborns treated with propranolol showed less progression to Stage 3 (risk ratio 0.52; 95% CI 0.47-0.58, relative reduction of risk 48%) or Stage 3 plus (relative risk 0.42 95% CI 0.31-0.58, relative reduction of risk 58%). The infants required fewer laser treatments and less need for rescue treatment with intravitreal bevacizumab (relative risk 0.48; 95% CI 0.29-0.79, relative reduction of risk 52 %), a 100% relative reduction of risk for progression to Stage 4. They also had significantly lower plasma soluble E-selectin levels. However, 5 of the 26 newborns treated with propranolol had serious adverse effects (hypotension, bradycardia), in conjunction with episodes of sepsis, anesthesia induction, or tracheal stimulation.
Conclusion:
This pilot study suggests that the administration of oral propranolol is effective in counteracting the progression of ROP but that safety is a concern.
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