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Updated: Dec 17, 2025

Limbal Approach-Subretinal Injection of Viral Vectors for Gene Therapy in Mice Retinal Pigment Epithelium
Published on: August 7, 2015
Limited time window for retinal gene therapy in a preclinical model of ciliopathy
Poppy Datta1,2, Avri Ruffcorn1,2, Seongjin Seo1,2
1Department of Ophthalmology and Visual Sciences, The University of Iowa Carver College of Medicine, Iowa City, IA 52242, USA.
Abstract:
Retinal degeneration is a common clinical feature of ciliopathies, a group of genetic diseases linked to ciliary dysfunction, and gene therapy is an attractive treatment option to prevent vision loss. Although the efficacy of retinal gene therapy is well established by multiple proof-of-concept preclinical studies, its long-term effect, particularly when treatments are given at advanced disease stages, is controversial. Incomplete treatment and intrinsic variability of gene delivery methods may contribute to the variable outcomes. Here, we used a genetic rescue approach to 'optimally' treat retinal degeneration at various disease stages and examined the long-term efficacy of gene therapy in a mouse model of ciliopathy. We used a Bardet-Biedl syndrome type 17 (BBS17) mouse model, in which the gene-trap that suppresses Bbs17 (also known as Lztfl1) expression can be removed by tamoxifen administration, restoring normal gene expression systemically. Our data indicate that therapeutic effects of retinal gene therapy decrease gradually as treatments are given at later stages. These results suggest the presence of limited time window for successful gene therapy in certain retinal degenerations. Our study also implies that the long-term efficacy of retinal gene therapy may depend on not only the timing of treatment but also other factors such as the function of mutated genes and residual activities of mutant alleles.
Insights
Gene therapy shows promise for retinal degeneration in ciliopathies, but its effectiveness diminishes with later treatment. Optimal timing is crucial for long-term vision preservation in these genetic eye diseases.
Area of Science:
- Genetics
- Ophthalmology
- Molecular Biology
Background:
- Ciliopathies are genetic disorders characterized by retinal degeneration due to ciliary dysfunction.
- Gene therapy is a potential treatment for preventing vision loss in these conditions.
- The long-term efficacy of gene therapy, especially in advanced stages, remains debated.
Purpose of the Study:
- To investigate the long-term efficacy of gene therapy for retinal degeneration.
- To determine the impact of treatment timing on therapeutic outcomes.
- To examine gene therapy effectiveness at various disease stages in a ciliopathy model.
Main Methods:
- Utilized a genetic rescue strategy in a Bardet-Biedl syndrome type 17 (BBS17) mouse model.
- Administered tamoxifen to remove a gene trap, restoring Bbs17 (Lztfl1) expression.
- Evaluated retinal gene therapy outcomes at different disease progression stages.
Main Results:
- Therapeutic effects of gene therapy decreased progressively with delayed treatment.
- Later treatment administration correlated with reduced long-term efficacy.
- The study identified a critical time window for successful gene therapy.
Conclusions:
- The timing of intervention is a critical factor for successful retinal gene therapy in ciliopathies.
- Long-term efficacy may also depend on the specific gene's function and residual mutant allele activity.
- These findings highlight the importance of early treatment for managing genetic retinal degenerations.

