Restoration of Vision with Ectopic Expression of Human Rod Opsin
暂无分享,去创建一个
Annette E. Allen | Robert J. Lucas | Katherine E. Davis | Cyril Eleftheriou | Nina Milosavljevic | R. Lucas | Cyril G. Eleftheriou | J. Cehajic-Kapetanovic | Nina Milosavljevic | Robert A. Bedford | P. Bishop | Jasmina Cehajic-Kapetanovic | Abigail Pienaar | Robert Bedford | Paul N. Bishop | A. Allen | A. Pienaar | K. Davis
[1] Siegrid Löwel,et al. Restoring the ON Switch in Blind Retinas: Opto-mGluR6, a Next-Generation, Cell-Tailored Optogenetic Tool , 2015, PLoS biology.
[2] Robert J. Lucas,et al. Human melanopsin forms a pigment maximally sensitive to blue light (λmax ≈ 479 nm) supporting activation of Gq/11 and Gi/o signalling cascades , 2013, Proceedings of the Royal Society B: Biological Sciences.
[3] Satchidananda Panda,et al. Melanopsin Contributions to Irradiance Coding in the Thalamo-Cortical Visual System , 2010, PLoS biology.
[4] Karl Deisseroth,et al. Genetic Reactivation of Cone Photoreceptors Restores Visual Responses in Retinitis Pigmentosa , 2010, Science.
[5] R. Lucas,et al. Glycosidic enzymes enhance retinal transduction following intravitreal delivery of AAV2 , 2010, Molecular vision.
[6] E. Strettoi,et al. Retinal Ganglion Cells Survive and Maintain Normal Dendritic Morphology in a Mouse Model of Inherited Photoreceptor Degeneration , 2008, The Journal of Neuroscience.
[7] C. Cepko,et al. A Core Paired-Type and POU Homeodomain-Containing Transcription Factor Program Drives Retinal Bipolar Cell Gene Expression , 2008, The Journal of Neuroscience.
[8] Franck P. Martial,et al. Melanopsin-Driven Light Adaptation in Mouse Vision , 2014, Current Biology.
[9] M. Meister,et al. Rapid Innate Defensive Responses of Mice to Looming Visual Stimuli , 2013, Current Biology.
[10] Dirk Trauner,et al. Photochemical Restoration of Visual Responses in Blind Mice , 2012, Neuron.
[11] Mark F. Bear,et al. Visual recognition memory, manifest as long-term habituation, requires synaptic plasticity in V1 , 2015, Nature Neuroscience.
[12] R. Douglas,et al. Behavioral assessment of visual acuity in mice and rats , 2000, Vision Research.
[13] Jean Bennett,et al. Efficient transduction and optogenetic stimulation of retinal bipolar cells by a synthetic adeno-associated virus capsid and promoter , 2014, EMBO molecular medicine.
[14] Annette E. Allen,et al. Melanopsin-Based Brightness Discrimination in Mice and Humans , 2012, Current Biology.
[15] E. Lütjen-Drecoll,et al. Morphological changes of retinal pigment epithelium and choroid in rd-mice. , 1999, Experimental eye research.
[16] Edward S Boyden,et al. Virally delivered channelrhodopsin-2 safely and effectively restores visual function in multiple mouse models of blindness. , 2011, Molecular therapy : the journal of the American Society of Gene Therapy.
[17] John G. Flannery,et al. Restoration of visual function by expression of a light-gated mammalian ion channel in retinal ganglion cells or ON-bipolar cells , 2014, Proceedings of the National Academy of Sciences.
[18] A. Dizhoor,et al. Ectopic Expression of a Microbial-Type Rhodopsin Restores Visual Responses in Mice with Photoreceptor Degeneration , 2006, Neuron.
[19] Current Biology , 2012, Current Biology.
[20] B. Roska,et al. Optogenetic therapy for retinitis pigmentosa , 2011, Gene Therapy.
[21] Takashi Maejima,et al. Optogenetic Control of Motor Coordination by Gi/o Protein-coupled Vertebrate Rhodopsin in Cerebellar Purkinje Cells* , 2011, The Journal of Biological Chemistry.
[22] A. Milam,et al. Preservation of the inner retina in retinitis pigmentosa. A morphometric analysis. , 1997, Archives of ophthalmology.
[23] K. Donner,et al. In search of the visual pigment template , 2000, Visual Neuroscience.
[24] Zhaoyang Feng,et al. Light‐sensitive coupling of rhodopsin and melanopsin to Gi/o and Gq signal transduction in Caenorhabditis elegans , 2012, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[25] Dirk Trauner,et al. Restoring Visual Function to Blind Mice with a Photoswitch that Exploits Electrophysiological Remodeling of Retinal Ganglion Cells , 2014, Neuron.
[26] G. H. Jacobs,et al. Contributions of the mouse UV photopigment to the ERG and to vision , 2007, Documenta Ophthalmologica.
[27] F. Netter,et al. Supplemental References , 2002, We Came Naked and Barefoot.
[28] Douglas S Kim,et al. Light-activated channels targeted to ON bipolar cells restore visual function in retinal degeneration , 2008, Nature Neuroscience.
[29] T. Aleman,et al. Rapid restoration of visual pigment and function with oral retinoid in a mouse model of childhood blindness. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[30] E. N. Pugh,et al. Molecular mechanisms of vertebrate photoreceptor light adaptation , 1999, Current Opinion in Neurobiology.
[31] H. Chiel,et al. Fast noninvasive activation and inhibition of neural and network activity by vertebrate rhodopsin and green algae channelrhodopsin. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[32] Robert A. Frazor,et al. Independence of luminance and contrast in natural scenes and in the early visual system , 2005, Nature Neuroscience.
[33] Dirk Trauner,et al. LiGluR restores visual responses in rodent models of inherited blindness. , 2011, Molecular therapy : the journal of the American Society of Gene Therapy.
[34] Jian-xing Ma,et al. 11-cis-Retinal Reduces Constitutive Opsin Phosphorylation and Improves Quantum Catch in Retinoid-deficient Mouse Rod Photoreceptors* , 2002, The Journal of Biological Chemistry.
[35] R. Masland,et al. Restoration of visual function in retinal degeneration mice by ectopic expression of melanopsin , 2008, Proceedings of the National Academy of Sciences.
[36] M. Hascöet,et al. The mouse light/dark box test. , 2003, European journal of pharmacology.
[37] Olivier Marre,et al. Targeting channelrhodopsin-2 to ON-bipolar cells with vitreally administered AAV Restores ON and OFF visual responses in blind mice. , 2015, Molecular therapy : the journal of the American Society of Gene Therapy.
[38] Tomomitsu Miyoshi,et al. Specific deficit of the ON response in visual transmission by targeted disruption of the mGIuR6 gene , 1995, Cell.
[39] Edward N. Pugh,et al. From candelas to photoisomerizations in the mouse eye by rhodopsin bleaching in situ and the light-rearing dependence of the major components of the mouse ERG , 2004, Vision Research.
[40] R. Normann,et al. Light adaptation and sensitivity controlling mechanisms in vertebrate photoreceptors , 1998, Progress in Retinal and Eye Research.