ERK is sequentially activated in neurons, microglia, and astrocytes by spinal nerve ligation and contributes to mechanical allodynia in this neuropathic pain model
Top Cited Papers
- 1 March 2005
- journal article
- research article
- Published by Wolters Kluwer Health in PAIN®
- Vol. 114 (1) , 149-159
- https://doi.org/10.1016/j.pain.2004.12.022
Abstract
Activation of extracellular signal-regulated kinase (ERK), a mitogen activated-protein kinase (MAPK), in dorsal horn neurons contributes to inflammatory pain by transcription-dependent and -independent means. We have now investigated if ERK is activated in the spinal cord after a spinal nerve ligation (SNL) and if this contributes to the neuropathic pain-like behavior generated in this model. An L5 SNL induces an immediate (<10 min) but transient (<6 h) induction of phosphoERK (pERK) restricted to neurons in the superficial dorsal horn. This is followed by a widespread induction of pERK in spinal microglia that peaks between 1 and 3 days post-surgery. On Day 10, pERK is expressed both in astrocytes and microglia, but by Day 21 predominantly in astrocytes in the dorsal horn. In the L5 DRG SNL transiently induces pERK in neurons at 10 min, and in satellite cells on Day 10 and 21. Intrathecal injection of the MEK (ERK kinase) inhibitor PD98059 on Day 2, 10 or 21 reduces SNL-induced mechanical allodynia. Our results suggest that ERK activation in the dorsal horn, as well as in the DRG, mediates pain through different mechanisms operating in different cells at different times. The sequential activation of ERK in dorsal horn microglia and then in astrocytes might reflect distinct roles for these two subtypes of glia in the temporal evolution of neuropathic pain.Keywords
This publication has 61 references indexed in Scilit:
- Disruption of ErbB receptor signaling in adult non-myelinating Schwann cells causes progressive sensory lossNature Neuroscience, 2003
- Impaired neuropathic pain responses in mice lacking the chemokine receptor CCR2Proceedings of the National Academy of Sciences, 2003
- Phosphorylation of extracellular signal-regulated kinases 1/2 is predominantly enhanced in the microglia of the rat spinal cord following dorsal root transectionNeuroscience, 2003
- Identification of MEK1 as a novel target for the treatment of neuropathic painBritish Journal of Pharmacology, 2003
- Nociceptor Sensitization by Extracellular Signal-Regulated KinasesJournal of Neuroscience, 2001
- Extracellular Signal-Regulated Kinase and p38 Subgroups of Mitogen-Activated Protein Kinases Regulate Inducible Nitric Oxide Synthase and Tumor Necrosis Factor-α Gene Expression in Endotoxin-Stimulated Primary Glial CulturesJournal of Neuroscience, 1998
- Dissociation of microglial activation and neuropathic pain behaviors following peripheral nerve injury in the ratJournal of Neuroimmunology, 1997
- Spinal cord substance P receptor immunoreactivity increases in both inflammatory and nerve injury models of persistent painNeuroscience, 1996
- PD 098059 Is a Specific Inhibitor of the Activation of Mitogen-activated Protein Kinase Kinase in Vitro and in VivoJournal of Biological Chemistry, 1995
- Increased staining of immunoreactive dynorphin cell bodies in the deafferented spinal cord of the ratNeuroscience Letters, 1988