Skip to main content
OpenTrials
Recruiting

NCT Number: NCT03083431

Oral Propranolol for Prevention of Threshold Retinopathy of Prematurity

Extremely premature infants are at risk of developing a potentially blinding eye disease, called retinopathy of prematurity (ROP). Currently available treatment, consisting of laser surgery or injection of drugs into the eye balls, may prevent most but not all cases of permanent ROP-mediated blindness. Both types of treatment are associated with significant costs and side effects.

An orally administered drug commonly used to treat hypertension, propranolol, may be effective in halting progression of ROP to severe stages, as suggested by preliminary data from small studies. As severe (threshold) ROP is an overall rare disease, the effectiveness of propranolol in combating ROP can only be assessed in a large, multicenter randomized controlled trial involving hospitals caring for extremely preterm infants of diverse origin.

Recruiting

Interested in participating?

Request Info

Key information

Age range

5 week–15 week

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 2

Primary location

University Hospital Tübingen, Tübingen, Baden-Wurttemberg, Germany

Loading trial locations.

About this study

Threshold Retinopathy of Prematurity (ROP), observed in a fraction of extremely premature infants, is characterized by retinal vessel proliferation that threatens vision secondary to retinal detachment. Currently available treatments (ablative laser surgery or intravitreal anti-VEGF injections) may prevent most but not all cases of permanent ROP-mediated blindness and are associated with significant costs and side effects.

Orally administered propranolol, a commonly used drug to treat hypertension, may be effective in halting progression of ROP to severe stages, as suggested by preliminary data from small studies. Propranolol has been used for decades not only in adult patients but also in newborn infants with heart diseases. Moreover, it has been licensed in 2014 for the use in newborn infants with hemangioma in the European Union, Switzerland and the United States. This multicenter randomized placebo-controlled trial aims to assess whether oral propranolol given to extremely premature infants below 28 weeks gestational age reduces the rates of threshold ROP.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Preterm infant born before 28 week's gestation
  • Birth weight below 1250 g
  • At least 5 weeks of age (at randomisation)
  • PMA 310/7 - 36 6/7 weeks
  • Ophthalmoscopic evidence of incipient ROP (stage 1 or 2, with or without plus disease in any zone)
  • Written informed consent by parents or legal guardian, according to national requirements

Exclusion criteria

  • ROP stage ≥ 3, AP-ROP or suspected AP-ROP, or any other ROP requiring an intervention (study endpoint already reached).
  • Conditions that indicate open label propranolol such as: thyrotoxicosis, arterial hypertension or certain heart diseases (such as tetralogy of Fallot, paroxysmal supraventricular tachycardia, or long QT syndrome) etc.
  • Major congenital malformations or known chromosomal anomalies
  • Colobomas and other eye malformations
  • PHACE syndrome (posterior fossa anomalies, large infantile hemangiomas of the face, neck, and/or scalp, arterial lesions, cardiac abnormalities/coarctation of the aorta, eye anomalies) (risk of cerebrovascular complications)
  • Very large hemangioma (risk of hyperkalemia), as judged by the attending physician
  • Medication of the infant with rifampicin or phenobarbitone (enhanced metabolic clearance)
  • Chronic kidney impairment (serum creatinine > 1.3 mg/dl [115 μmol/L])
  • Severe liver dysfunction (ALT (GPT) > 900 U/L)
  • Known hypersensitivity to propranolol or any of the excipients (see 6.3.1.)
  • Prinzmetal's angina, Raynaud's phenomenon (severe peripheral arterial circulatory disturbance), or pheochromocytoma (contraindications for propranolol in adults, not occurring in newborn infants)
  • Any circumstances that make the investigator believe that participation in the study leads to exceptional medical or organizational problems for the patient
  • Conditions that prohibit propranolol therapy such as: Atrio-ventricular block grade 2 or 3 hypertrophic cardiomyopathy, sinoatrial block, uncontrolled heart failure or cardiogenic shock, bronchial asthma
  • Medication of the infant or the mother if breastfeeding with clonidine, reserpine, angiotensin-converting enzyme inhibitors, angiotensin-receptor antagonists (contraindicated in preterm infants) or antiarrhythmic drugs including amiodarone, propafenone, lidocaine, digoxin/digitoxin, quinidine, verapamil, diltiazem, bepridil (pharmacodynamic interaction)

Treatment and study plan

Propranolol

Drug

Oral propranolol (1.6 mg propranolol-hydrochloride/kg/d in 4 divided dosages)

Placebo

Drug

Oral solution containing the same excipients as propranolol solution

Primary outcomes

  1. Survival without adverse ophthalmological outcome (stage ≥ 3, AP-ROP, or any ROP treatment)

    Time frame: 48 weeks postmenstrual age

    The primary endpoint for efficacy is survival until 48 weeks postmenstrual age without adverse ophthalmological outcome (stage ≥ 3, AP-ROP, or any ROP treatment) diagnosed according to the International Committee for the Classification of Retinopathy of Prematurity Revisited.

Secondary outcomes

  1. Time to adverse ophthalmological outcome in days

    Time frame: 48 weeks postmenstrual age

    Time to adverse ophthalmological outcome in days (alternative to primary endpoint to account for the timing, considering death as a competing risk)

  2. Survival without adverse ophthalmological outcome

    Time frame: 48 weeks postmenstrual age

    Survival without adverse ophthalmological outcome (as defined for the primary outcome)

  3. Survival with adverse ophthalmological outcome

    Time frame: 48 weeks postmenstrual age

    Survival with adverse ophthalmological outcome (as defined for the primary outcome)

  4. Survival without local treatment for ROP

    Time frame: 48 weeks postmenstrual age

    Survival without local treatment for ROP (ablative laser surgery or intravitreal injections of anti-VEGF agents).

  5. Death until discharge

    Time frame: 48 weeks postmenstrual age

    Death until discharge

  6. Death until 48 weeks postmenstrual age

    Time frame: 48 weeks postmenstrual age

    Death until 48 weeks postmenstrual age

  7. Recurrence of ROP in infants treated with anti-VEGF-antagonists

    Time frame: 70 (+/- 2 weeks) postmenstrual age

    Recurrence of ROP in infants treated with anti-VEGF-antagonists

  8. Need for repeated ROP therapy in infants treated with anti-VEGF-antagonists

    Time frame: 70 (+/- 2 weeks) postmenstrual age

    Need for repeated ROP therapy in infants treated with anti-VEGF-antagonists

Other outcomes

  1. Intraventricular haemorrhages (all grades)

    Time frame: 48 weeks postmenstrual age

    Intraventricular haemorrhage (all grades)

  2. Posthaemorrhagic hydrocephalus requiring intervention

    Time frame: 48 weeks postmenstrual age

    Posthaemorrhagic hydrocephalus requiring intervention

  3. Cystic leukomalacia

    Time frame: 48 weeks postmenstrual age

    Cystic leukomalacia

  4. Persistent ductus arteriosus requiring treatment

    Time frame: 48 weeks postmenstrual age

    Persistent ductus arteriosus requiring treatment

  5. Bronchopulmonary dysplasia

    Time frame: 48 weeks postmenstrual age

    Bronchopulmonary dysplasia (mild, moderate, severe), defined and graded according to the consensus statement of the national institutes of health

  6. Duration of subsequent hospitalisation

    Time frame: 48 weeks postmenstrual age

    Number of days of subsequent hospitalisations

  7. Duration of primary hospitalisation

    Time frame: 48 weeks postmenstrual age

    Number of days of primary hospitalisation

  8. Z-scores for weight

    Time frame: 48 weeks postmenstrual age

    Z-scores for weight at the beginning and end of IMP administration

  9. Z-scores for head circumference

    Time frame: 48 weeks postmenstrual age

    Z-scores for head circumference at the beginning and end of IMP administration

  10. Duration of supplemental oxygen

    Time frame: 48 weeks postmenstrual age

    Number of days on supplemental oxygen

  11. Necrotizing enterocolitis

    Time frame: 48 weeks postmenstrual age

    Necrotizing enterocolitis (requiring surgery)

  12. Safety: Culture-proven sepsis or meningitis during IMP administration

    Time frame: 48 weeks postmenstrual age

    Culture-proven sepsis or meningitis during IMP administration (defined as growth of a recognized pathogen not counting coagulase-negative staphylococci in blood or cerebrospinal fluid in an infant treated for at least 5 d with intravenous antibiotics and a rise of C-reactive protein to more than 10 mg/l during the first 72 h of antibiotic treatment)

  13. Safety: Symptomatic hypoglycemia during IMP administration

    Time frame: 48 weeks postmenstrual age

    Symptomatic hypoglycemia during IMP administration (blood glucose < 30 mg/dl requiring intravenous glucose administration for 48 h or more), not counting glucose administration "to keep-vein-open" (e.g. at rates of ≤ 1 mL/h)

  14. Safety: Emergency endotracheal intubation during IMP administration

    Time frame: 48 weeks postmenstrual age

    Emergency endotracheal intubation attributable to obstructive airway disease during IMP administration (excluding elective intubation for surgery)

Study contacts

Contact information is provided by the study sponsor or research team.

Christoph Rüegger, M.D.

CONTACT

[email protected]

+41 43 253 98 10

Dirk Bassler, M.D.

CONTACT

[email protected]

+41 44 255 53 40

Sponsors and collaborators

Lead sponsor

University of Zurich

Other

Collaborators

  • Ankara University
  • University Hospital Tuebingen

Registry information

Acronym: RoProp

Important dates

Study start
2022
Primary completion
2028
Study completion
2029
First posted
Mar 20, 2017
Registry last updated
May 7, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

Published trials that share one or more normalized conditions with this study.