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Pete Humphries

Showing results (11-20 of 30) with videos related to

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Frontiers in Neuroscience|September 25, 2020
AAV-Delivered <i>Tulp1</i> Supplementation Therapy Targeting Photoreceptors Provides Minimal Benefit in <i>Tulp1-/-</i> RetinasArpad Palfi, Adlet Yesmambetov, Sophia Millington-Ward, et al.
Experimental Eye Research|March 11, 2008
Retinal cells integrate into the outer nuclear layer and differentiate into mature photoreceptors after subretinal transplantation into adult miceUdo Bartsch, Wasi Oriyakhel, Paul F Kenna, et al.
The Journal of Gene Medicine|April 3, 2007
Development of strategies for conditional RNA interferenceDanny Allen, Paul F Kenna, Arpad Palfi, et al.
Genes|December 2, 2020
Properties and Therapeutic Implications of an Enigmatic D477G RPE65 Variant Associated with Autosomal Dominant Retinitis PigmentosaAnna-Sophia Kiang, Paul F Kenna, Marian M Humphries, et al.
International Journal of Molecular Sciences|September 10, 2021
Fibrotic Changes to Schlemm's Canal Endothelial Cells in GlaucomaRuth A Kelly, Kristin M Perkumas, Matthew Campbell, et al.
Human Molecular Genetics|September 7, 2010
Prevention of autosomal dominant retinitis pigmentosa by systemic drug therapy targeting heat shock protein 90 (Hsp90)Lawrence C S Tam, Anna-Sophia Kiang, Matthew Campbell, et al.
Investigative Ophthalmology & Visual Science|November 24, 2006
Rod photoreceptor loss in Rho-/- mice reduces retinal hypoxia and hypoxia-regulated gene expressionTanyth E de Gooyer, Kathryn A Stevenson, Pete Humphries, et al.
Advances in Experimental Medicine and Biology|March 19, 2010
Protection of photoreceptors in a mouse model of RP10Lawrence C S Tam, Anna-Sophia Kiang, Naomi Chadderton, et al.
BMJ Open Ophthalmology|May 20, 2020
Advanced late-onset retinitis pigmentosa with dominant-acting D477G RPE65 mutation is responsive to oral synthetic retinoid therapyPaul F Kenna, Marian M Humphries, Anna-Sophia Kiang, et al.
Life Science Alliance|April 22, 2020
SARM1 deficiency promotes rod and cone photoreceptor cell survival in a model of retinal degenerationEma Ozaki, Luke Gibbons, Nuno Gb Neto, et al.
Pageof 3

Showing results (11-20 of 30) with videos related to

Sort By:
Pageof 3
Frontiers in Neuroscience|September 25, 2020
AAV-Delivered <i>Tulp1</i> Supplementation Therapy Targeting Photoreceptors Provides Minimal Benefit in <i>Tulp1-/-</i> RetinasArpad Palfi, Adlet Yesmambetov, Sophia Millington-Ward, et al.
Experimental Eye Research|March 11, 2008
Retinal cells integrate into the outer nuclear layer and differentiate into mature photoreceptors after subretinal transplantation into adult miceUdo Bartsch, Wasi Oriyakhel, Paul F Kenna, et al.
The Journal of Gene Medicine|April 3, 2007
Development of strategies for conditional RNA interferenceDanny Allen, Paul F Kenna, Arpad Palfi, et al.
Genes|December 2, 2020
Properties and Therapeutic Implications of an Enigmatic D477G RPE65 Variant Associated with Autosomal Dominant Retinitis PigmentosaAnna-Sophia Kiang, Paul F Kenna, Marian M Humphries, et al.
International Journal of Molecular Sciences|September 10, 2021
Fibrotic Changes to Schlemm's Canal Endothelial Cells in GlaucomaRuth A Kelly, Kristin M Perkumas, Matthew Campbell, et al.
Human Molecular Genetics|September 7, 2010
Prevention of autosomal dominant retinitis pigmentosa by systemic drug therapy targeting heat shock protein 90 (Hsp90)Lawrence C S Tam, Anna-Sophia Kiang, Matthew Campbell, et al.
Investigative Ophthalmology & Visual Science|November 24, 2006
Rod photoreceptor loss in Rho-/- mice reduces retinal hypoxia and hypoxia-regulated gene expressionTanyth E de Gooyer, Kathryn A Stevenson, Pete Humphries, et al.
Advances in Experimental Medicine and Biology|March 19, 2010
Protection of photoreceptors in a mouse model of RP10Lawrence C S Tam, Anna-Sophia Kiang, Naomi Chadderton, et al.
BMJ Open Ophthalmology|May 20, 2020
Advanced late-onset retinitis pigmentosa with dominant-acting D477G RPE65 mutation is responsive to oral synthetic retinoid therapyPaul F Kenna, Marian M Humphries, Anna-Sophia Kiang, et al.
Life Science Alliance|April 22, 2020
SARM1 deficiency promotes rod and cone photoreceptor cell survival in a model of retinal degenerationEma Ozaki, Luke Gibbons, Nuno Gb Neto, et al.
Pageof 3