Author | Fairbanks, Carolyn A. | en_US |
Author | Schreiber, Kristin L. | en_US |
Author | Brewer, Kori L. | en_US |
Author | Yu, Chen-Guang | en_US |
Author | Stone, Laura S. | en_US |
Author | Kitto, Kelley F. | en_US |
Author | Nguyen, H. Oanh | en_US |
Author | Grocholski, Brent M. | en_US |
Author | Shoeman, Don W. | en_US |
Author | Kehl, Lois J. | en_US |
Author | Regunathan, Soundararajan | en_US |
Author | Reis, Donald J. | en_US |
Author | Yezierski, Robert P. | en_US |
Author | Wilcox, George L. | en_US |
Date Accessioned | 2011-03-02T15:27:16Z | en_US |
Date Accessioned | 2011-05-17T00:15:26Z | |
Date Available | 2011-03-02T15:27:16Z | en_US |
Date Available | 2011-05-17T00:15:26Z | |
Date of Issue | 2000-09-12 | en_US |
Identifier (Citation) | Proceedings of the National Academy of Sciences; 97:19 p. 10584-10589 | en_US |
Identifier (URI) | http://hdl.handle.net/10342/3273 | en_US |
Description | Antagonists of glutamate receptors of the N-methyl-D-aspartate subclass (NMDAR) or inhibitors of nitric oxide synthase (NOS) prevent nervous system plasticity. Inflammatory and neuropathic pain rely on plasticity, presenting a clinical opportunity for the use of NMDAR antagonists and NOS inhibitors in chronic pain. Agmatine (AG), an endogenous neuromodulator present in brain and spinal cord, has both NMDAR antagonist and NOS inhibitor activities. We report here that AG, exogenously administered to rodents, decreased hyperalgesia accompanying inflammation, normalized the mechanical hypersensitivity (allodyniayhyperalgesia) produced by chemical or mechanical nerve injury, and reduced autotomy-like behavior and lesion size after excitotoxic spinal cord injury. AG produced these effects in the absence of antinociceptive effects in acute pain tests. Endogenous AG also was detected in rodent lumbosacral spinal cord in concentrations similar to those previously detected in brain. The evidence suggests a unique antiplasticity and neuroprotective role for AG in processes underlying persistent pain and neuronal injury. Originally published Proceedings of the National Academy of Sciences, Vol. 97, No. 19, Sep 2000 | en_US |
Language | en_US | en_US |
Publisher | East Carolina University | en_US |
Related URI | http://www.pnas.org/content/by/year | en_US |
Rights | Author notified of opt-out rights by Cammie Jennings. | en_US |
Subject | Agmatine | en_US |
Subject | Nervous system plasticity | en_US |
Subject | Nerve injuries | en_US |
Subject | Chronic pain | en_US |
Title | Agmatine reverses pain induced by inflammation, neuropathy, and spinal cord injury | en_US |
Type | Article | en_US |
Identifier (PMID) | PMC27068 | en_US |
Identifier (DOI) | 10.1073/pnas.97.19.10584 | |
Journal Name | Proceedings of the National Academy of Sciences | |
Journal Volume | 97 | |
Journal Issue | 19 | |
Article Pages | 10584-10589 | |