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Updated: Jan 4, 2026

A Rhodopsin Transport Assay by High-Content Imaging Analysis
Published on: January 16, 2019
Autosomal Dominant Retinitis Pigmentosa Due to Class B Rhodopsin Mutations: An Objective Outcome for Future Treatment
Alexander Sumaroka1, Artur V Cideciyan1, Jason Charng1
1Department of Ophthalmology, Scheie Eye Institute, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Abstract:
Gene therapy for adRP due to RHO mutations was recently shown to prevent photoreceptor death in a canine model of Class B disease. Among translational steps to be taken, one is to determine a method to detect efficacy in a human clinical trial. The relatively slow progression of adRP becomes a difficulty for clinical trials requiring an answer to whether there is slowed progression of degeneration in response to therapy. We performed a single-center, retrospective observational study of cross-sectional and longitudinal data. The study was prompted by our identification of a pericentral disease distribution in Class B RHO-adRP. Ultrawide optical coherence tomography (OCT) scans were used. Inferior retinal pericentral defects was an early disease feature. Degeneration further inferior in the retina merged with the pericentral defect, which extended into superior retina. In about 70% of patients, there was an asymmetric island of structure with significantly greater superior than inferior ellipsoid zone (EZ) extent. Serial measures of photoreceptor structure by OCT indicated constriction in superior retinal extent within a two-year interval. We conclude that these results should allow early-phase trials of therapy in RHO-adRP to move forward by inclusion of patients with an asymmetric extent of photoreceptor structure and by monitoring therapeutic effects over two years in the superior retina, a reasonable target for subretinal injection.
Insights
Gene therapy for retinitis pigmentosa (RP) may be advanced by identifying early disease markers. This study found asymmetric photoreceptor loss in the superior retina, offering a target for monitoring treatment efficacy.
Area of Science:
- Ophthalmology
- Genetics
- Retinal Diseases
Background:
- Gene therapy for autosomal dominant retinitis pigmentosa (adRP) due to RHO mutations shows promise in preclinical models.
- Detecting therapeutic efficacy in human clinical trials for slow-progressing diseases like adRP is challenging.
Purpose of the Study:
- To identify reliable methods for detecting treatment efficacy in early-phase clinical trials for RHO-adRP.
- To characterize the disease distribution and progression in RHO-adRP using ultrawide field optical coherence tomography (OCT).
Main Methods:
- Retrospective observational study using cross-sectional and longitudinal data.
- Analysis of ultrawide field OCT scans to assess retinal structure and disease progression.
- Identification of pericentral disease distribution and asymmetric ellipsoid zone (EZ) extent.
Main Results:
- Early disease feature: inferior retinal pericentral defects.
- Significant asymmetry in photoreceptor structure (superior vs. inferior EZ extent) observed in ~70% of patients.
- Serial OCT measures revealed constriction in superior retinal extent within two years.
Conclusions:
- The superior retina shows asymmetric photoreceptor loss and constriction, serving as a measurable target for therapeutic intervention.
- These findings support moving forward with early-phase RHO-adRP trials by including patients with asymmetric disease and monitoring the superior retina over two years.
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