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Citations to this article

Halting progressive neurodegeneration in advanced retinitis pigmentosa
Susanne F. Koch, … , Chyuan-Sheng Lin, Stephen H. Tsang
Susanne F. Koch, … , Chyuan-Sheng Lin, Stephen H. Tsang
Published August 24, 2015
Citation Information: J Clin Invest. 2015;125(9):3704-3713. https://doi.org/10.1172/JCI82462.
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Research Article Neuroscience Article has an altmetric score of 17

Halting progressive neurodegeneration in advanced retinitis pigmentosa

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Abstract

Hereditary retinal degenerative diseases, such as retinitis pigmentosa (RP), are characterized by the progressive loss of rod photoreceptors followed by loss of cones. While retinal gene therapy clinical trials demonstrated temporary improvement in visual function, this approach has yet to achieve sustained functional and anatomical rescue after disease onset in patients. The lack of sustained benefit could be due to insufficient transduction efficiency of viral vectors (“too little”) and/or because the disease is too advanced (“too late”) at the time therapy is initiated. Here, we tested the latter hypothesis and developed a mouse RP model that permits restoration of the mutant gene in all diseased photoreceptor cells, thereby ensuring sufficient transduction efficiency. We then treated mice at early, mid, or late disease stages. At all 3 time points, degeneration was halted and function was rescued for at least 1 year. Not only do our results demonstrate that gene therapy effectively preserves function after the onset of degeneration, our study also demonstrates that there is a broad therapeutic time window. Moreover, these results suggest that RP patients are treatable, despite most being diagnosed after substantial photoreceptor loss, and that gene therapy research must focus on improving transduction efficiency to maximize clinical impact.

Authors

Susanne F. Koch, Yi-Ting Tsai, Jimmy K. Duong, Wen-Hsuan Wu, Chun-Wei Hsu, Wei-Pu Wu, Luis Bonet-Ponce, Chyuan-Sheng Lin, Stephen H. Tsang

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 Total
Citations: 4 5 7 6 1 6 8 3 6 8 2 56
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Citations to this article (56)

Title and authors Publication Year
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Journal of Clinical Investigation 2025
Inpp5e is crucial for photoreceptor outer segment maintenance
Gupta M, Lewis TR, Stuck MW, Spencer WJ, Klementieva NV, Arshavsky VY, Pazour GJ
Journal of Cell Science 2025
Glutamine catabolism supports amino acid biosynthesis and suppresses the integrated stress response to promote photoreceptor survival.
Goswami MT, Weh E, Subramanya S, Weh KM, Durumutla HB, Hager H, Miller N, Chaudhury S, Andren A, Sajjakulnukit P, Zhang L, Besirli C, Lyssiotis CA, Wubben TJ
eLife 2025
Gene therapy for age-related macular degeneration: a promising frontier in vision preservation.
Hushmandi K, Lam HY, Wong WM, Tan W, Daryabari SH, Reiter RJ, Farahani N, Kumar AP
Cell communication and signaling : CCS 2025
Progressive aggregation of rhodopsin mutants in mouse models of autosomal dominant retinitis pigmentosa
Sreelakshmi Vasudevan, Subhadip Senapati, Paul Park
Nature Communications 2024
CRISPR-editing of anti-anemia drug target rescues independent preclinical models of retinitis pigmentosa
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International journal of molecular sciences 2024
Glutaminase deficiency in rod photoreceptors disrupts nonessential amino acid levels to activate the integrated stress response and induce rapid degeneration.
Goswami MT, Weh E, Subramanya S, Weh KM, Durumutla HB, Hager H, Miller N, Chaudhury S, Andren A, Sajjakulnukit P, Besirli CG, Lyssiotis CA, Wubben TJ
bioRxiv : the preprint server for biology 2024
Metabolic plasticity in a Pde6bSTOP/STOP retinitis pigmentosa mouse model following rescue
Ayten M, Díaz-Lezama N, Ghanawi H, Haffelder FC, Kajtna J, Straub T, Borso M, Imhof A, Hauck SM, Koch SF
Molecular Metabolism 2024
Late gene therapy limits the restoration of retinal function in a mouse model of retinitis pigmentosa
Scalabrino ML, Thapa M, Wang T, Sampath AP, Chen J, Field GD
2023
A New Preclinical Model of Retinitis Pigmentosa Due to Pde6g Deficiency
Jentzsch MC, Tsang SH, Koch SF
2023
Spatiotemporal control of genome engineering in cone photoreceptors
Wang NK, Liu PK, Kong Y, Tseng YJ, Jenny LA, Nolan ND, Chen N, Wang HH, Hsu CW, Huang WC, Sparrow JR, Lin CS, Tsang SH
Cell & Bioscience 2023
Rod Photoreceptor-Specific Ablation of Metformin Target, AMPK, in a Preclinical Model of Autosomal Recessive Retinitis Pigmentosa.
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Advances in experimental medicine and biology 2023
Translatability barriers between preclinical and clinical trials of AAV gene therapy in inherited retinal diseases
Shamshad A, Kang C, Jenny L, Persad-Paisely E, Tsang SH
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Late gene therapy limits the restoration of retinal function in a mouse model of retinitis pigmentosa.
Scalabrino ML, Thapa M, Wang T, Sampath AP, Chen J, Field GD
Nature Communications 2023
Reconstitution of the phosphodiesterase 6 maturation process important for photoreceptor cell function.
Singh S, Srivastava D, Boyd K, Artemyev NO
The Journal of biological chemistry 2023
Late-stage rescue of visually guided behavior in the context of a significantly remodeled retinitis pigmentosa mouse model
J Kajtna, S Tsang, S Koch
Cellular and Molecular Life Sciences 2022
Renormalization of metabolic coupling treats age-related degenerative disorders: an oxidative RPE niche fuels the more glycolytic photoreceptors
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Eye 2022
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Rapamycin Improved Retinal Function and Morphology in a Mouse Model of Retinal Degeneration
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Frontiers in neuroscience 2022
Glucose uptake by GLUT1 in photoreceptors is essential for outer segment renewal and rod photoreceptor survival.
Daniele LL, Han JYS, Samuels IS, Komirisetty R, Mehta N, McCord JL, Yu M, Wang Y, Boesze-Battaglia K, Bell BA, Du J, Peachey NS, Philp NJ
The FASEB Journal 2022
The Musashi proteins direct post-transcriptional control of protein expression and alternate exon splicing in vertebrate photoreceptors.
Matalkah F, Jeong B, Sheridan M, Horstick E, Ramamurthy V, Stoilov P
2022
Influence of Systematic Gaze Patterns in Navigation and Search Tasks with Simulated Retinitis Pigmentosa
A Neugebauer, K Stingl, I Ivanov, S Wahl
Brain Sciences 2021
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International journal of molecular sciences 2020
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International journal of medical sciences 2020
Disrupted Plasma Membrane Protein Homeostasis in a Xenopus Laevis Model of Retinitis Pigmentosa
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CAPN5 genetic inactivation phenotype supports therapeutic inhibition trials
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