Retinal Ciliopathies and Potential Gene Therapies: A Focus on Human iPSC-Derived Organoid Models

被引:5
作者
Mcdonald, Andrew [1 ]
Wijnholds, Jan [1 ,2 ]
机构
[1] Leiden Univ Med Ctr LUMC, Dept Ophthalmol, NL-2333ZC Leiden, Netherlands
[2] Royal Netherlands Acad Arts & Sci KNAW, Netherlands Inst Neurosci, NL-1105BA Amsterdam, Netherlands
关键词
retinal ciliopathy; retinal organoid; cilium; gene therapy; CRISPR/Cas9; adeno-associated virus (AAV); CEP290; USH2A; RPGR; MYO7A; PIGMENTOSA GTPASE REGULATOR; LEBER CONGENITAL AMAUROSIS; ADENOASSOCIATED VIRUS; RETINITIS-PIGMENTOSA; USHER-SYNDROME; IN-VIVO; CONE PHOTORECEPTORS; ADENOVIRUS VECTORS; MESSENGER-RNA; AAV VECTORS;
D O I
10.3390/ijms25052887
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The human photoreceptor function is dependent on a highly specialised cilium. Perturbation of cilial function can often lead to death of the photoreceptor and loss of vision. Retinal ciliopathies are a genetically diverse range of inherited retinal disorders affecting aspects of the photoreceptor cilium. Despite advances in the understanding of retinal ciliopathies utilising animal disease models, they can often lack the ability to accurately mimic the observed patient phenotype, possibly due to structural and functional deviations from the human retina. Human-induced pluripotent stem cells (hiPSCs) can be utilised to generate an alternative disease model, the 3D retinal organoid, which contains all major retinal cell types including photoreceptors complete with cilial structures. These retinal organoids facilitate the study of disease mechanisms and potential therapies in a human-derived system. Three-dimensional retinal organoids are still a developing technology, and despite impressive progress, several limitations remain. This review will discuss the state of hiPSC-derived retinal organoid technology for accurately modelling prominent retinal ciliopathies related to genes, including RPGR, CEP290, MYO7A, and USH2A. Additionally, we will discuss the development of novel gene therapy approaches targeting retinal ciliopathies, including the delivery of large genes and gene-editing techniques.
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页数:23
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共 163 条
  • [1] Human stem cell-based retina on chip as new translational model for validation of AAV retinal gene therapy vectors
    Achberger, Kevin
    Cipriano, Madalena
    Duechs, Matthias J.
    Schoen, Christian
    Michelfelder, Stefan
    Stierstorfer, Birgit
    Lamla, Thorsten
    Kauschke, Stefan G.
    Chuchuy, Johanna
    Roosz, Julia
    Mesch, Lena
    Cora, Virginia
    Pars, Selin
    Pashkovskaia, Natalia
    Corti, Serena
    Hartmann, Sophia-Marie
    Kleger, Alexander
    Kreuz, Sebastian
    Maier, Udo
    Liebau, Stefan
    Loskill, Peter
    [J]. STEM CELL REPORTS, 2021, 16 (09): : 2242 - 2256
  • [2] Merging organoid and organ-on-a-chip technology to generate complex multi-layer tissue models in a human retina-on-a-chip platform
    Achberger, Kevin
    Probst, Christopher
    Haderspeck, Jasmin
    Bolz, Sylvia
    Rogal, Julia
    Chuchuy, Johanna
    Nikolova, Marina
    Cora, Virginia
    Antkowiak, Lena
    Haq, Wadood
    Shen, Nian
    Schenke-Layland, Katja
    Ueffing, Marius
    Liebau, Stefan
    Loskill, Peter
    [J]. ELIFE, 2019, 8
  • [3] The retinal ciliopathies
    Adams, N. A.
    Awadein, Ahmed
    Toma, Hassanain S.
    [J]. OPHTHALMIC GENETICS, 2007, 28 (03) : 113 - 125
  • [4] CRISPR-Cas9 correction of a nonsense mutation in LCA5 rescues lebercilin expression and localization in human retinal organoids
    Afanasyeva, Tess A. V.
    Athanasiou, Dimitra
    Perdigao, Pedro R. L.
    Whiting, Kae R.
    Duijkers, Lonneke
    Astuti, Galuh D. N.
    Bennett, Jean
    Garanto, Alejandro
    van der Spuy, Jacqueline
    Roepman, Ronald
    Cheetham, Michael E.
    Collin, Rob W. J.
    [J]. MOLECULAR THERAPY-METHODS & CLINICAL DEVELOPMENT, 2023, 29 : 522 - 531
  • [5] A look into retinal organoids: methods, analytical techniques, and applications
    Afanasyeva, Tess A. V.
    Corral-Serrano, Julio C.
    Garanto, Alejandro
    Roepman, Ronald
    Cheetham, Michael E.
    Collin, Rob W. J.
    [J]. CELLULAR AND MOLECULAR LIFE SCIENCES, 2021, 78 (19-20) : 6505 - 6532
  • [6] Proteomic characterization of the human centrosome by protein correlation profiling
    Andersen, JS
    Wilkinson, CJ
    Mayor, T
    Mortensen, P
    Nigg, EA
    Mann, M
    [J]. NATURE, 2003, 426 (6966) : 570 - 574
  • [7] Search-and-replace genome editing without double-strand breaks or donor DNA
    Anzalone, Andrew V.
    Randolph, Peyton B.
    Davis, Jessie R.
    Sousa, Alexander A.
    Koblan, Luke W.
    Levy, Jonathan M.
    Chen, Peter J.
    Wilson, Christopher
    Newby, Gregory A.
    Raguram, Aditya
    Liu, David R.
    [J]. NATURE, 2019, 576 (7785) : 149 - +
  • [8] The photoreceptor cilium and its diseases
    Bachmann-Gagescu, Ruxandra
    Neuhauss, Stephan C. F.
    [J]. CURRENT OPINION IN GENETICS & DEVELOPMENT, 2019, 56 : 22 - 33
  • [9] Nephrocystin proteins NPHP5 and Cep290 regulate BBSome integrity, ciliary trafficking and cargo delivery
    Barbelanne, Marine
    Hossain, Delowar
    Chan, David Puth
    Peranen, Johan
    Tsang, William Y.
    [J]. HUMAN MOLECULAR GENETICS, 2015, 24 (08) : 2185 - 2200
  • [10] Gene therapy rescues photoreceptor blindness in dogs and paves the way for treating human X-linked retinitis pigmentosa
    Beltran, William A.
    Cideciyan, Artur V.
    Lewin, Alfred S.
    Iwabe, Simone
    Khanna, Hemant
    Sumaroka, Alexander
    Chiodo, Vince A.
    Fajardo, Diego S.
    Roman, Alejandro J.
    Deng, Wen-Tao
    Swider, Malgorzata
    Aleman, Tomas S.
    Boye, Sanford L.
    Genini, Sem
    Swaroop, Anand
    Hauswirth, William W.
    Jacobson, Samuel G.
    Aguirre, Gustavo D.
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2012, 109 (06) : 2132 - 2137