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Human Gene Therapy|October 15, 2009
Adeno-associated virus-mediated rhodopsin replacement provides therapeutic benefit in mice with a targeted disruption of the rhodopsin geneArpad Palfi, Sophia Millington-Ward, Naomi Chadderton, et al.Biomacromolecules|November 6, 2019
Tackling the Limitations of Copolymeric Small Interfering RNA Delivery Agents by a Combined Experimental-Computational ApproachIlja Tabujew, Maziar Heidari, Christoph Freidel, et al.HGG Advances|September 1, 2023
<i>USH2A</i> variants causing retinitis pigmentosa or Usher syndrome provoke differential retinal phenotypes in disease-specific organoidsCarla Sanjurjo-Soriano, Carla Jimenez-Medina, Nejla Erkilic, et al.Frontiers in Cellular Neuroscience|February 9, 2017
Deep Sequencing of the Human Retinae Reveals the Expression of Odorant ReceptorsNikolina Jovancevic, Kirsten A Wunderlich, Claudia Haering, et al.Molecular Therapy : the Journal of the American Society of Gene Therapy|January 13, 2011
Suppression and replacement gene therapy for autosomal dominant disease in a murine model of dominant retinitis pigmentosaSophia Millington-Ward, Naomi Chadderton, Mary O'Reilly, et al.Human Molecular Genetics|June 26, 2014
Peripherin-2 couples rhodopsin to the CNG channel in outer segments of rod photoreceptorsElvir Becirovic, O N Phuong Nguyen, Christos Paparizos, et al.Cellular and Molecular Life Sciences : CMLS|July 3, 2013
Light-dependent phosphorylation of Bardet-Biedl syndrome 5 in photoreceptor cells modulates its interaction with arrestin1Tyler S Smith, Benjamin Spitzbarth, Jian Li, et al.European Journal of Human Genetics : EJHG|June 7, 2012
Intravitreal delivery of AAV-NDI1 provides functional benefit in a murine model of Leber hereditary optic neuropathyNaomi Chadderton, Arpad Palfi, Sophia Millington-Ward, et al.Cilia|January 29, 2013
The mitotic spindle protein SPAG5/Astrin connects to the Usher protein network postmitoticallyFerry Fj Kersten, Erwin van Wijk, Lisette Hetterschijt, et al.Human Molecular Genetics|May 17, 2014
Disruption of the retinitis pigmentosa 28 gene Fam161a in mice affects photoreceptor ciliary structure and leads to progressive retinal degenerationMarcus Karlstetter, Nasrin Sorusch, Albert Caramoy, et al.Pageof 16