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Published on: December 19, 2017
Current and Future Treatment of Retinitis Pigmentosa
Nancy Cross1, Cécile van Steen2, Yasmina Zegaoui1
1Market Access, Lightning Health, London, UK.
Insights
Retinitis Pigmentosa (RP) treatments are advancing with over 100 drugs in development, including innovative cell and gene therapies. These therapies offer new hope for inherited retinal diseases, addressing a significant unmet need.
Area of Science:
- Ophthalmology
- Genetics
- Regenerative Medicine
Background:
- Retinitis Pigmentosa (RP) causes progressive vision loss, significantly impacting patients' quality of life.
- High unmet need exists due to delayed referrals and lack of standard treatments for most RP patients.
- The retina's accessibility and immune privilege make it suitable for advanced therapies.
Purpose of the Study:
- To describe the evolving therapeutic landscape for Retinitis Pigmentosa (RP).
- To review the rationale for advanced therapy medicinal products (ATMPs) in RP treatment.
- To profile leading cell and gene therapy candidates in late-stage development for RP.
Main Methods:
- Literature review of publicly available data.
- Qualitative research with physicians across five European countries.
- Review of leading candidates in the RP drug development pipeline.
Main Results:
- Over 100 drugs are in development globally for RP, with 50% being ATMPs.
- Fifteen cell and gene therapies are in late-stage development.
- Five leading candidates (AGN-151597, GS-030, VMCO-1, jCell, ReN-003) were profiled.
Conclusions:
- Cell and gene therapies offer promising therapeutic avenues for RP.
- Gene therapies aim to restore vision, while cell therapies may have broader applications.
- Diversifying the development pipeline and ensuring early diagnosis are crucial for effective RP patient care.
Abstract:
Retinitis Pigmentosa (RP) is a group of inherited retinal dystrophies (IRDs) characterised by progressive vision loss. Patients with RP experience a significant impact on daily activities, social interactions, and employment, reducing their quality of life. Frequent delays in referrals and no standard treatment for most patients also contribute to the high unmet need for RP. This paper aims to describe the evolving therapeutic landscape for RP including the rationale for advanced therapy medicinal products (ATMPs). A review of available data was conducted in three stages: (1) a search of publicly available literature; (2) qualitative research with physicians treating RP patients in France, Germany, Italy, Spain, and the UK; and (3) a review of leading candidates in the RP pipeline. Globally, there are currently over 100 drugs in development for RP; 50% of which are ATMPs. Amongst the 15 cell and gene therapies in late-stage development, 5 leading candidates have been selected to profile based on the development stage, drug target and geography: gene therapies AGN-151597, GS-030 and VMCO-1 and human stem cell therapies jCell and ReN-003. Hereditary retinal diseases are suitable for treatment with cell and gene therapies due to the accessibility of the retina and its immune privilege and compartmentalisation. Therapeutic approaches that aim to rescue photoreceptors (eg gene therapies) require that non-functional target cells are still present, whereas other therapies (eg cell therapies) are not reliant on the presence of viable photoreceptors. Gene therapies may be attractive as their fundamental goal is to restore vision; however, cell therapies will likely have a broader application and do not rely on genetic testing, which can delay treatment. Ensuring effective therapeutic options for RP patients across disease stages requires the continued diversification and advancement of the development pipeline, and sustained efforts to promote early patient identification and timely diagnosis.
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