Retinal ganglion cell (RGC) survival is thought to depend on the level of activation of TrkB receptors by the endogenous neurotrophins, BDNF and NT4/5. These neurotrophins (NT) are derived from the superior colliculus, and complex with specific TrkB receptors. They then travel by retrograde axonal transport to the RCG cell body. There they act to preserve RGC by stimulating specific cell survival pathways, and by inhibiting specific cell death pathways (apoptosis). Elevated intraocular pressure (IOP), a major risk factor for glaucoma, obstructs axonal transport, and has been shown to inhibit delivery of NT to the RGC. In addition, there is good reason to believe that other risk factors for glaucoma, such as aging and previous optic nerve damage, may also affect this system, possibly by reducing the production of TrkB receptors, the production of NT, or both. These facts lead to the hypothesis that, in glaucoma, RGC death results from a reduction in the activation of neurotrophin-dependent TrkB mediated survival pathways. Using Brown Norway rats, methods now exist for modeling chronically elevated IOP, surgically lowering IOP, and studying these phenomena in aged, as well as young adult animals. This proposal will determine the effects of these three important glaucoma risk factors on neurotrophin TrkB activated survival signaling pathways and on RGC survival. A final specific aim will pharmacologically enhance the activity of NT-mediated cell survival pathways in partially damaged eyes following IOP control. This models the most common clinical situation in glaucoma. Success will be gauged by measuring decreased RGC loss, as well as changes in NT-mediated signaling pathways that enhance survival. These experiments will help to determine the potential for agents that enhance TrkB-activation in RGCs as a neuroprotective therapy for glaucoma.

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Research Project (R01)
Project #
5R01EY010145-10
Application #
6819742
Study Section
Visual Sciences A Study Section (VISA)
Program Officer
Liberman, Ellen S
Project Start
1993-04-01
Project End
2006-02-28
Budget Start
2004-12-01
Budget End
2006-02-28
Support Year
10
Fiscal Year
2005
Total Cost
$377,500
Indirect Cost
Name
Oregon Health and Science University
Department
Ophthalmology
Type
Schools of Medicine
DUNS #
096997515
City
Portland
State
OR
Country
United States
Zip Code
97239
Jiang, Xiaoyun; Johnson, Elaine; Cepurna, William et al. (2018) The effect of age on the response of retinal capillary filling to changes in intraocular pressure measured by optical coherence tomography angiography. Microvasc Res 115:12-19
Morrison, John C; Johnson, Elaine C; Cepurna, William O (2018) Hypertonic Saline Injection Model of Experimental Glaucoma in Rats. Methods Mol Biol 1695:11-21
Lozano, Diana C; Choi, Dongseok; Jayaram, Hari et al. (2018) Utilizing RNA-Seq to Identify Differentially Expressed Genes in Glaucoma Model Tissues, Such as the Rodent Optic Nerve Head. Methods Mol Biol 1695:299-310
Jayaram, Hari; Lozano, Diana C; Johnson, Elaine C et al. (2018) Investigation of MicroRNA Expression in Experimental Glaucoma. Methods Mol Biol 1695:287-297
Tehrani, Shandiz; Delf, R Katherine; Cepurna, William O et al. (2018) In Vivo Small Molecule Delivery to the Optic Nerve in a Rodent Model. Sci Rep 8:4453
Teotia, Pooja; Chopra, Divyan A; Dravid, Shashank Manohar et al. (2017) Generation of Functional Human Retinal Ganglion Cells with Target Specificity from Pluripotent Stem Cells by Chemically Defined Recapitulation of Developmental Mechanism. Stem Cells 35:572-585
Jayaram, Hari; Phillips, Jay I; Lozano, Diana C et al. (2017) Comparison of MicroRNA Expression in Aqueous Humor of Normal and Primary Open-Angle Glaucoma Patients Using PCR Arrays: A Pilot Study. Invest Ophthalmol Vis Sci 58:2884-2890
Morrison, John C; Cepurna, William O; Tehrani, Shandiz et al. (2016) A Period of Controlled Elevation of IOP (CEI) Produces the Specific Gene Expression Responses and Focal Injury Pattern of Experimental Rat Glaucoma. Invest Ophthalmol Vis Sci 57:6700-6711
Pazos, Marta; Yang, Hongli; Gardiner, Stuart K et al. (2016) Expansions of the neurovascular scleral canal and contained optic nerve occur early in the hypertonic saline rat experimental glaucoma model. Exp Eye Res 145:173-186
Tan, Ou; Liu, Liang; Zhang, Xinbo et al. (2016) Glaucoma Increases Retinal Surface Contour Variability as Measured by Optical Coherence Tomography. Invest Ophthalmol Vis Sci 57:OCT438-43

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