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Published on: March 12, 2016
Medical management of pediatric glaucoma: lessons learned from randomized clinical trials
Matteo Sacchi1, Rosario Alfio Umberto Lizzio2, Edoardo Villani2
1University Eye Clinic, San Giuseppe Hospital, University of Milan, Via San Vittore 12, 20123, Milan, Italy. matteosacchi.hsg@gmail.com.
Insights
Few randomized clinical trials (RCTs) exist for pediatric glaucoma medical therapy. While drug efficacy appears comparable to adults, careful monitoring for adverse events, especially with beta-blockers, is crucial in children.
Area of Science:
- Ophthalmology
- Pediatric Medicine
- Clinical Pharmacology
Background:
- Pediatric glaucoma management relies on medical therapies, but evidence from randomized clinical trials (RCTs) is limited.
- Understanding the safety and efficacy of these treatments in children is crucial for optimizing patient outcomes.
Purpose of the Study:
- To critically review and discuss existing randomized clinical trials (RCTs) on medical therapies for pediatric glaucoma.
- To evaluate the safety and efficacy of various glaucoma medications in pediatric populations.
Main Methods:
- Systematic searches were conducted to identify RCTs involving pediatric subjects with ocular hypertension or glaucoma treated with medications.
- The methodologies, safety profiles, and efficacy of the included glaucoma drugs were analyzed.
Main Results:
- Five RCTs were included, comparing agents like dorzolamide, timolol, brinzolamide, levobetaxolol, betaxolol, latanoprost, and travoprost.
- While efficacy varied (20-36% IOP reduction), the percentage of responders was generally lower in children compared to adults. Serious systemic adverse events were reported with timolol, but not with prostaglandins.
- None of the RCTs were adequately powered to detect statistically significant differences in intraocular pressure (IOP) between treatments.
Conclusions:
- The available RCTs for pediatric glaucoma medical therapy are limited and underpowered.
- Glaucoma drug efficacy in pediatric responders appears comparable to adults, but systemic adverse events, particularly with timolol, necessitate cautious use.
- Minimizing drug absorption (e.g., gel formulations, lacrimal occlusion) and enhanced safety monitoring are recommended for pediatric patients on topical glaucoma medications.
Purpose:
To critically discuss the randomized clinical trials (RCTs) on glaucoma medical therapy for the management of pediatric glaucoma.
Methods:
RCTs on glaucoma drugs carried out on pediatric subjects with ocular hypertension and glaucoma were identified through systematic searches. The methods of the RCTs and the safety and the efficacy of the glaucoma drugs were reviewed and discussed.
Results:
We included five RCTs. One study compared dorzolamide with 0.5% timolol gel; one brinzolamide with 0.5% levobetaxolol; one 0.25% betaxolol, 0.25% timolol gel, and 0.5% timolol gel; one latanoprost with 0.5% timolol; and one travoprost with 0.5% timolol. The primary outcome was safety for two studies and efficacy for three studies. None of the RCTs was powered to detect statistically significant differences in intraocular pressure (IOP) between treatments. In total, 658 subjects received at least one dose of study medication. Beta-blockers were administered to 359 patients, carbonic anhydrase inhibitor (CAI) to 154, and prostaglandins to 145 patients. IOP-lowering efficacy ranged from 20 to 23% for CAI, from 9 to 36% for beta-blockers, and from 26 to 27% for prostaglandins. The percentage of responders was 50% for CAI, ranged from 38 to 74% for beta-blockers and from 60 to 83% for prostaglandins. Two patients receiving timolol experienced a systemic, drug-related serious adverse event (one patient bradycardia and one pneumonia). Systemic, nonserious drug-related events occurred in 15 patients randomized to beta-blockers and in 8 patients randomized to CAI. No adverse events occurred in children treated with prostaglandins.
Conclusion:
RCTs that are available on medical therapy for glaucoma are few and underpowered. The proportion of responders is lower in children; however, in subjects who are responders, the efficacy of glaucoma drugs seemed to be comparable to that in adults. As systemic adverse events have been reported, including serious events with timolol, a particular attempt to minimize the absorption of the drug (using the lowest dose and the gel formulation of beta-blockers or considering the lacrimal punctum occlusion) and a follow-up that is more frequent and more focused on safety should be considered in pediatric subjects who are on topical glaucoma medications.
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