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DNA microarray analysis of the contused spinal cord: Effect of NMDA receptor inhibition
Article first published online: 15 APR 2002
DOI: 10.1002/jnr.10171
Copyright © 2002 Wiley-Liss, Inc.
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How to Cite
Nesic, O., Svrakic, N.M., Xu, G.-Y., McAdoo, D., Westlund, K. N., Hulsebosch, C. E., Ye, Z., Galante, A., Soteropoulos, P., Tolias, P., Young, W., Hart, R.P. and Perez-Polo, J.R. (2002), DNA microarray analysis of the contused spinal cord: Effect of NMDA receptor inhibition. J. Neurosci. Res., 68: 406–423. doi: 10.1002/jnr.10171
Publication History
- Issue published online: 26 APR 2002
- Article first published online: 15 APR 2002
- Manuscript Accepted: 6 DEC 2001
- Manuscript Revised: 3 DEC 2001
- Manuscript Received: 20 NOV 2001
Funded by
- NINDS
- Mission Connect Consortium of the TIRR Foundation
- Clayton Foundation
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- 2, , , , , , MicroRNA dysregulation following spinal cord contusion: implications for neural plasticity and repair, Neuroscience, 2011, 186, 146
- 3, , , , Sulphoraphane enhances aquaporin-4 expression and decreases spinal cord oedema following spinal cord injury, Brain Injury, 2011, 25, 3, 300
- 4, , , , , , , , , Aquaporins in spinal cord injury: the janus face of aquaporin 4, Neuroscience, 2010, 168, 4, 1019
- 5, , , , Altered microRNA expression following traumatic spinal cord injury, Experimental Neurology, 2009, 219, 2, 424
- 6, , , , Mechanisms of chronic central neuropathic pain after spinal cord injury, Brain Research Reviews, 2009, 60, 1, 202
- 7, , , , , , , Neuronal Apoptosis Is Inhibited by Cord Blood Stem Cells after Spinal Cord Injury, Journal of Neurotrauma, 2009, 26, 11, 2057
- 8, , , , , Neuroprotective effects of bone morphogenetic protein 7 (BMP7) treatment after spinal cord injury, Neuroscience Letters, 2009, 465, 3, 226
- 9, , , , , , , , , , Peripheral and central sensitization in remote spinal cord regions contribute to central neuropathic pain after spinal cord injury, Pain, 2009, 147, 1-3, 265
- 10, , , , , , , , Rapid Induction of Genes Associated with Tissue Protection and Neural Development in Contused Adult Spinal Cord after Radial Glial Cell Transplantation, Journal of Neurotrauma, 2009, 26, 7, 979
- 11, , , , , , , Chronic erythropoietin-mediated effects on the expression of astrocyte markers in a rat model of contusive spinal cord injury, Neuroscience, 2008, 151, 2, 452
- 12, Gliopathy ensures persistent inflammation and chronic pain after spinal cord injury, Experimental Neurology, 2008, 214, 1, 6
- 13, , , , , Neuropathic pain and temporal expression of preprodynorphin, protein kinase C and N-methyl-d-aspartate receptor subunits after spinal cord injury, Neuroscience Letters, 2008, 447, 2-3, 115
- 14, , , , , , , Nuclear factor-κB decoy amelioration of spinal cord injury-induced inflammation and behavior outcomes, Journal of Neuroscience Research, 2008, 86, 3Direct Link:
- 15, , , , , , , , , , Genetic Program of Neuronal Differentiation and Growth Induced by Specific Activation of NMDA Receptors, Neurochemical Research, 2006, 32, 2, 363
- 16, , , Inflammatory and Apoptotic Signaling after Spinal Cord Injury, Journal of Neurotrauma, 2006, 23, 3-4, 335
- 17
- 18
- 19, , Activation of the ERK1/2 signaling cascade by excitotoxic spinal cord injury, Molecular Brain Research, 2005, 138, 2, 244
- 20, , , , , , , , , , , , , , Exogenous Bcl-xl fusion protein spares neurons after spinal cord injury, Journal of Neuroscience Research, 2005, 79, 5Direct Link:
- 21, , , Real-time quantitative PCR analysis of temporal–spatial alterations in gene expression after spinal cord contusion, Journal of Neurochemistry, 2005, 93, 4Direct Link:
- 22
- 23, , , , Sulforaphane enhances aquaporin-4 expression and decreases cerebral edema following traumatic brain injury, Journal of Neuroscience Research, 2005, 82, 4Direct Link:
- 24, , , , , , , The effect of glutamate receptor blockers on glutamate release following spinal cord injury. Lack of evidence for an ongoing feedback cascade of damage â glutamate release â damage â glutamate release â etc., Brain Research, 2005, 1038, 1, 92
- 25, , , , , , , , , , , Transcriptional profiling of spinal cord injury-induced central neuropathic pain, Journal of Neurochemistry, 2005, 95, 4Direct Link:
- 26, , Basic Advances and New Avenues in Therapy of Spinal Cord Injury, Annual Review of Medicine, 2004, 55, 1, 255
- 27, Cellular transplantation strategies for spinal cord injury and translational neurobiology, Neurotherapeutics, 2004, 1, 4, 424
- 28, Cellular transplantation strategies for spinal cord injury and translational neurobiology, NeuroRX, 2004, 1, 4, 424
- 29, , , , , , , , , , , Differential gene expression after complete spinal cord transection in adult rats: An analysis focused on a subchronic post-injury stage, Neuroscience, 2004, 128, 2, 375
- 30, , , , Discovering genes: the use of microarrays and laser capture microdissection in pain research, Brain Research Reviews, 2004, 46, 2, 225
- 31, , , , , , , Effects of NF-κB oligonucleotide “Decoys” on gene expression in P7 rat hippocampus after hypoxia/ischemia, Journal of Neuroscience Research, 2004, 77, 1Direct Link:
- 32, , , , Genomic analysis of insulin-like growth factor-I gene transfer in thermally injured rats, Wound Repair and Regeneration, 2004, 12, 2Direct Link:
- 33, , , , , , Mediators of ischemic preconditioning identified by microarray analysis of rat spinal cord, Experimental Neurology, 2004, 185, 1, 81
- 34, , , , , , , , , Age-related trends in gene expression in the chemosensory-nasal mucosae of senescence-accelerated mice, Ageing Research Reviews, 2003, 2, 2, 211
- 35, Central sensitization and pain after spinal cord injury, Seminars in Pain Medicine, 2003, 1, 3, 159
- 36, , , , , , , , , , , Expression of glutamate transporter, GABRA6, serine proteinase inhibitor 2 and low levels of glutamate and GABA in the brain of knock-out mouse for Canavan disease, Brain Research Bulletin, 2003, 61, 4, 427
- 37, Gene expression changes after focal stroke, traumatic brain and spinal cord injuries, Current Opinion in Neurology, 2003, 16, 6, 699
- 38, , Inflammation, degeneration and regeneration in the injured spinal cord: insights from DNA microarrays, Trends in Neurosciences, 2003, 26, 10, 555
- 39, , , , , N-Methyl-d-aspartate receptor subunit expression and phosphorylation following excitotoxic spinal cord injury in rats, Neuroscience Letters, 2003, 349, 1, 37
- 40Current Awareness on Comparative and Functional Genomics, Comparative and Functional Genomics, 2002, 3, 6Direct Link:
- 41, , , Will improved understanding of the pathophysiological mechanisms involved in acute spinal cord injury improve the potential for therapeutic intervention?, Current Opinion in Neurology, 2002, 15, 6, 713

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