Glaucoma is the second most common cause of blindness in the world. Our project seeks to specify new approaches to its therapy by extending the lives of retinal ganglion cells through treatments that would supplement eye pressure lowering therapy that is now the standard of care. These experiments will elucidate the mechanism of blindness in glaucoma through use of experimental models in rats and monkeys and through study of human eyes with glaucoma. The role of neurotrophins in the maintenance of normal retinal ganglion cell health will be investigated. The hypothesis will be examined that neurotrophin deprivation is an important factor in ganglion cell death in glaucoma by interfering with normal signaling between target brain cells and retinal ganglion cells. The project will investigate the role of microtubule associated proteins within ganglion cell fibers in the obstruction of axonal transport known to occur in glaucoma. It includes expression of genes for neurotrophins, especially brain-deprived neurotrophic factor, in ganglion cells using viral vectors to assess the beneficial effect on chronic experimental glaucoma. Another aim is to determine whether cysteine proteases are activated during the death of ganglion cells in glaucoma. If these enzymes are found to be involved, their inhibition will be studied by ganglion cell expression of genes that inhibit them, again using viral vectors. A transgenic rat model will be developed that expresses an inhibitory protein for apoptotic cells death (p35) under conditional control of expression by exposure to tetracycline. In these rats, induced neuronal expression will be studied in a chronic glaucoma model to assess beneficial effects.

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Research Project (R01)
Project #
5R01EY002120-24
Application #
6384286
Study Section
Visual Sciences A Study Section (VISA)
Program Officer
Liberman, Ellen S
Project Start
1977-08-01
Project End
2003-07-31
Budget Start
2001-08-01
Budget End
2002-07-31
Support Year
24
Fiscal Year
2001
Total Cost
$359,092
Indirect Cost
Name
Johns Hopkins University
Department
Ophthalmology
Type
Schools of Medicine
DUNS #
045911138
City
Baltimore
State
MD
Country
United States
Zip Code
21218
Pitha, Ian; Oglesby, Ericka; Chow, Amanda et al. (2018) Rho-Kinase Inhibition Reduces Myofibroblast Differentiation and Proliferation of Scleral Fibroblasts Induced by Transforming Growth Factor ? and Experimental Glaucoma. Transl Vis Sci Technol 7:6
Kimball, Elizabeth C; Jefferys, Joan L; Pease, Mary E et al. (2018) The effects of age on mitochondria, axonal transport, and axonal degeneration after chronic IOP elevation using a murine ocular explant model. Exp Eye Res 172:78-85
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Kimball, Elizabeth C; Pease, Mary E; Steinhart, Matthew R et al. (2017) A mouse ocular explant model that enables the study of living optic nerve head events after acute and chronic intraocular pressure elevation: Focusing on retinal ganglion cell axons and mitochondria. Exp Eye Res 160:106-115
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Fu, Jie; Sun, Fengying; Liu, Wenhua et al. (2016) Subconjunctival Delivery of Dorzolamide-Loaded Poly(ether-anhydride) Microparticles Produces Sustained Lowering of Intraocular Pressure in Rabbits. Mol Pharm 13:2987-95
Oglesby, Ericka N; Tezel, Gülgün; Cone-Kimball, Elizabeth et al. (2016) Scleral fibroblast response to experimental glaucoma in mice. Mol Vis 22:82-99
Coudrillier, Baptiste; Pijanka, Jacek; Jefferys, Joan et al. (2015) Effects of age and diabetes on scleral stiffness. J Biomech Eng 137:
Quigley, Harry A; Pitha, Ian F; Welsbie, Derek S et al. (2015) Losartan Treatment Protects Retinal Ganglion Cells and Alters Scleral Remodeling in Experimental Glaucoma. PLoS One 10:e0141137

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