T. A. Doser
Oregon Health & Science University
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Investigative Ophthalmology & Visual Science | 2011
Y. Guo; Elaine C. Johnson; William O. Cepurna; J. A. Dyck; T. A. Doser; John C. Morrison
PURPOSE To identify patterns of early gene expression changes in the retinal ganglion cell layer (GCL) of a rodent model of chronic glaucoma. METHODS Prolonged elevation of intraocular pressure (IOP) was produced in rats by episcleral vein injection of hypertonic saline (N = 30). GCLs isolated by laser capture microdissection were grouped by grading of the nerve injury (<25% axon degeneration for early injury; >25% for advanced injury). Gene expression was determined by cDNA microarray of independent GCL RNA samples. Quantitative PCR (qPCR) was used to further examine the expression of selected genes. RESULTS By array analysis, 533 GCL genes (225 up, 308 down) were significantly regulated in early injury. Compared to only one major upregulated gene class of metabolism regulation, more were downregulated, including mitochondria, ribosome, proteasome, energy pathways, protein synthesis, protein folding, and synaptic transmission. qPCR confirmed an early upregulation of Atf3. With advanced injury, 1790 GCL genes were significantly regulated (997 up, 793 down). Altered gene categories included upregulated protein synthesis, immune response, and cell apoptosis and downregulated dendrite morphogenesis and axon extension. Of all the early changed genes, 50% were not present in advanced injury. These uniquely affected genes were mainly associated with upregulated transcription regulation and downregulated protein synthesis. CONCLUSIONS Early GCL gene responses to pressure-induced injury are characterized by an upregulation of Atf3 and extensive downregulation in genes associated with cellular metabolism and neuronal functions. Most likely, these changes represent those specific to RGCs and are thus potentially important for enhancing RGC survival in glaucoma.
Investigative Ophthalmology & Visual Science | 2010
Y. Guo; William O. Cepurna; J. A. Dyck; T. A. Doser; Elaine C. Johnson; John C. Morrison
PURPOSE To determine and compare gene expression patterns in the whole retina and retinal ganglion cell layer (RGCL) in a rodent glaucoma model. METHODS IOP was unilaterally elevated in Brown Norway rats (N = 26) by injection of hypertonic saline and monitored for 5 weeks. A cDNA microarray was used on whole retinas from one group of eyes with extensive optic nerve injury and on RGCL isolated by laser capture microdissection (LCM) from another group with comparable injury, to determine the significantly up- or downregulated genes and gene categories in both groups. Expression changes of selected genes were examined by quantitative reverse transcription-PCR (qPCR) to verify microarray results. RESULTS Microarray analysis of the whole retina identified 632 genes with significantly changed expression (335 up, 297 down), associated with 9 upregulated and 3 downregulated biological processes. In contrast, the RGCL microarray yielded 3726 genes with significantly changed expression (2003 up, 1723 down), including 60% of those found in whole retina. Thirteen distinct upregulated biological processes were identified in the RGCL, dominated by protein synthesis. Among 11 downregulated processes, axon extension and dendrite morphogenesis and generation of precursor metabolism and energy were uniquely identified in the RGCL. qPCR confirmed significant changes in 6 selected messages in whole retina and 11 in RGCL. Increased Atf3, the most upregulated gene in the RGCL, was confirmed by immunohistochemistry of RGCs. CONCLUSIONS Isolation of RGCL by LCM allows a more refined detection of gene response to elevated pressure and improves the potential of determining cellular mechanisms in RGCs and their supporting cells that could be targets for enhancing RGC survival.
Investigative Ophthalmology & Visual Science | 2010
John C. Morrison; William O. Cepurna; T. A. Doser; J. A. Dyck; Elaine C. Johnson
Investigative Ophthalmology & Visual Science | 2008
Elaine C. Johnson; T. A. Doser; William O. Cepurna; J. A. Dyck; Y. Guo; John C. Morrison
Investigative Ophthalmology & Visual Science | 2008
Y. Guo; Elaine C. Johnson; J. A. Dyck; William O. Cepurna; T. A. Doser; John C. Morrison
Investigative Ophthalmology & Visual Science | 2008
John C. Morrison; Y. Guo; J. A. Dyck; William O. Cepurna; T. A. Doser; Elaine C. Johnson
Investigative Ophthalmology & Visual Science | 2008
William O. Cepurna; Y. Guo; T. A. Doser; J. A. Dyck; Elaine C. Johnson; John C. Morrison
Investigative Ophthalmology & Visual Science | 2010
Elaine C. Johnson; T. A. Doser; J. A. Dyck; Y. Guo; Wendi S. Lambert; William O. Cepurna; John C. Morrison
Investigative Ophthalmology & Visual Science | 2010
William O. Cepurna; Elaine C. Johnson; T. A. Doser; Y. Guo; John C. Morrison
Investigative Ophthalmology & Visual Science | 2009
John C. Morrison; Y. Guo; J. A. Dyck; William O. Cepurna; T. A. Doser; Elaine C. Johnson