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Cell-autonomous restoration of splicing homeostasis and RP11 phenotype in patient-derived RPE and retinal organoids by PRPF31.AAV gene therapy.
Nature Communications · · Journal Article · Open access
Elia, Pauzuolyte + more
Abstract ↗AI summary
The abstract is read at the publisher; the summary is JClub's.
Viral delivery of PRPF31 restores splicing, cellular function, and visual activity in patient-derived retinal cells, even in mature stages, offering a promising therapy for RP11.
- Why it matters: Mutations in PRPF31 disrupt RNA splicing, leading to retinitis pigmentosa type 11, a degenerative eye disease with limited treatment options, highlighting the need for effective gene therapies.
- What they did: Researchers used viral vectors to deliver PRPF31 to patient-derived retinal pigment epithelium (RPE) cells and retinal organoids, assessing splicing activity, cellular pathology, and visual function.
- The result: Gene therapy reversed toxic protein buildup, restored key RPE functions, and improved photoreceptor activity, indicating that correcting splicing alone can enable broad therapeutic benefits across disease stages.
The findingWhy it mattersWhat they didThe result
- Open access