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Oculus

5.1 Rodent (139)

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84977 Expression and role of autophagy related protein p62 and LC3 in the retina in a rat model of acute ocular hypertension
Wu YY
International Journal of Ophthalmology 2020; 13: 21-28
85225 Safety evaluation of FM101, an A3 adenosine receptor modulator, in rat, for developing as therapeutics of glaucoma and hepatitis
Park CW
EXCLI journal 2020; 19: 187-200
84510 Intravitreal S100B Injection Triggers a Time-Dependent Microglia Response in a Pro-Inflammatory Manner in Retina and Optic Nerve
Grotegut P
Molecular Neurobiology 2020; 57: 1186-1202
84566 Inhibitive effect of TAK-242 on Tenon's capsule fibroblasts proliferation in rat eyes
Liang L
International Journal of Ophthalmology 2019; 12: 1699-1707
84913 Experimental glaucoma model with controllable intraocular pressure history
Ficarrotta KR
Scientific reports 2020; 10: 126
84681 Adaptation of retinal ganglion cell function during flickering light in the mouse
Chou TH
Scientific reports 2019; 9: 18396
84701 Neuroprotective effects of DAAO are mediated via the ERK1/2 signaling pathway in a glaucomatous animal model
Zhang X
Experimental Eye Research 2020; 190: 107892
84709 Protective Efficacy of a Dietary Supplement Based on Forskolin, Homotaurine, Spearmint Extract, and Group B Vitamins in a Mouse Model of Optic Nerve Injury
Locri F
Nutrients 2019; 11:
84909 Nuclear factor-kappa beta signaling is required for transforming growth factor Beta-2 induced ocular hypertension
Hernandez H
Experimental Eye Research 2020; 191: 107920
84913 Experimental glaucoma model with controllable intraocular pressure history
Ficarrotta KR
Scientific reports 2020; 10: 126
84640 A Reversible Silicon Oil-Induced Ocular Hypertension Model in Mice
Zhang J
Journal of Vision Exp 2019; 0:
84885 C3 Transferase-Expressing scAAV2 Transduces Ocular Anterior Segment Tissues and Lowers Intraocular Pressure in Mouse and Monkey
Tan J
Molecular therapy. Methods & clinical development 2020; 17: 143-155
85004 Elevated Intraocular Pressure Causes Abnormal Reactivity of Mouse Retinal Arterioles
Gericke A
Oxidative medicine and cellular longevity 2019; 2019: 9736047
84802 Early removal of senescent cells protects retinal ganglion cells loss in experimental ocular hypertension
Rocha LR
Aging Cell 2020; 19: e13089
84393 Silencing of GAS5 Alleviates Glaucoma in Rat Models by Reducing Retinal Ganglion Cell Apoptosis
Zhou RR
Human Genetics and Therapeutics 2019; 30: 1505-1519
84966 Destructive Effect of Intravitreal Heat Shock Protein 27 Application on Retinal Ganglion Cells and Neurofilament
Grotegut P
International journal of molecular sciences 2020; 21:
85196 Using BXD mouse strains in vision research: A systems genetics approach
Geisert EE
Molecular Vision 2020; 26: 173-187
85228 Rho-Associated Protein Kinase Inhibitor Treatment Promotes Proliferation and Phagocytosis in Trabecular Meshwork Cells
Chen W
Frontiers in pharmacology 2020; 11: 302
84774 Intravitreal Therapy Against the Complement Factor C5 Prevents Retinal Degeneration in an Experimental Autoimmune Glaucoma Model
Reinehr S
Frontiers in pharmacology 2019; 10: 1381
84507 A subacute model of glaucoma based on limbal plexus cautery in pigmented rats
Lani R
Scientific reports 2019; 9: 16286
85049 The Sustained Release of Tafluprost with a Drug Delivery System Prevents the Axonal Injury-induced Loss of Retinal Ganglion Cells in Rats
Sato K
Current Eye Research 2020; 0: 1-10
84863 SIRT1 is required for the neuroprotection of resveratrol on retinal ganglion cells after retinal ischemia-reperfusion injury in mice
Luo J
Graefe's Archive for Clinical and Experimental Ophthalmology 2020; 258: 335-344
85194 Systems Genetics of Optic Nerve Axon Necrosis During Glaucoma
Stiemke AB
Frontiers in genetics 2020; 11: 31
84681 Adaptation of retinal ganglion cell function during flickering light in the mouse
Toft-Nielsen J
Scientific reports 2019; 9: 18396
84863 SIRT1 is required for the neuroprotection of resveratrol on retinal ganglion cells after retinal ischemia-reperfusion injury in mice
He T
Graefe's Archive for Clinical and Experimental Ophthalmology 2020; 258: 335-344

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