In short
Age-related macular degeneration (AMD) is a common eye condition affecting older adults that can lead to vision loss. Currently, there are 6 ongoing clinical trials exploring various treatment approaches for this condition, particularly focusing on the neovascular form of the disease. These trials are being conducted across multiple European countries including Austria, France, Spain, Italy, Germany, and Hungary, and are investigating both established and new therapies aimed at reducing the need for frequent eye injections and preserving vision.
Clinical trial locations
- Austria
- Study on Faricimab and Aflibercept for Patients with Neovascular Age-Related Macular Degeneration Receiving Frequent Aflibercept Treatment
- Study on Faricimab for Patients with Neovascular Age-Related Macular Degeneration Who Have Not Received Prior Treatment
- Study on Treating Neovascular Age-Related Macular Degeneration with Aflibercept, Ranibizumab, and Brolucizumab for Patients with Active Disease
- France
- Germany
- Hungary
- Italy
- Spain
Summary
These six ongoing clinical trials represent diverse approaches to managing age-related macular degeneration, with a particular focus on the neovascular form of the disease. The trials are concentrated in Austria, which hosts three studies, while France, Spain, Italy, Germany, and Hungary also contribute to the research effort.
A notable trend is the emphasis on anti-VEGF therapies, which are central to five of the six trials. Medications like faricimab, aflibercept, ranibizumab, bevacizumab, and brolucizumab are all being evaluated for their effectiveness in managing abnormal blood vessel growth in the eye. Several trials specifically investigate whether treatment intervals can be extended, potentially reducing the burden of frequent eye injections on patients.
The most innovative approach is the gene therapy trial evaluating ABBV-RGX-314, which is conducting long-term follow-up across five countries until 2030. This treatment aims to enable the eye to produce its own anti-VEGF protein, potentially offering long-lasting benefits from a single treatment.
Other notable research directions include the use of advanced imaging techniques to monitor treatment response, the exploration of genetic factors that might influence how patients respond to treatments, and the application of automated tools to optimize real-world treatment decisions. These studies collectively aim to improve treatment outcomes while reducing the frequency of clinic visits and injections required for managing this vision-threatening condition.










