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The Sciatic Nerve Cuffing Model of Neuropathic Pain in Mice
Published on: July 16, 2014
Wnt signaling in the pathogenesis of multiple sclerosis-associated chronic pain
Subo Yuan1, Yuqiang Shi, Shao-Jun Tang
1Department of Neuroscience and Cell Biology, The University of Texas Medical Branch, Galveston, TX 77555, USA.
Abstract:
Many multiple sclerosis (MS) patients develop chronic pain, but the underlying pathological mechanism is unknown. Mice with experimental autoimmune encephalomyelitis (EAE) have been widely used to model MS-related neurological complications, including CNS demyelination, neuroinflammation and motor impairments. Similar to MS patients, EAE mice also develop chronic pain. We are interested in elucidating the potential involvement of Wnt signaling in the pathogenesis of chronic pain in EAE mice. In this study, we characterized the expression of Wnt signaling proteins in the spinal cord dorsal horn (SCDH) of EAE mice, by immunoblotting and immunostaining. The EAE model was created by immunization of adult mice (C57BL/6, 10 weeks) with myelin oligodendrocyte glycoprotein (MOG) 35-55. Robust mechanical hyperalgesia and allodynia were developed in both fore- and hindpaws of the EAE mice. Wnt3a, a prototypical Wnt ligand for the canonical pathway, was significantly increased in the SCDH of the EAE mice. Another key protein in the canonical pathway, ß-catenin, was also significantly up-regulated. In addition, Wnt5a, a prototypic Wnt ligand for the non-canonical pathway, and its receptor (co-receptor) Ror2 were also up-regulated in the SCDH of the EAE mice. We further found that Wnt5a antagonist Box5 and β-catenin inhibitor indomethacin attenuated mechanical allodynia in the EAE mice. Our data collectively suggest that Wnt signaling pathways are up-regulated in the SCDH of the EAE mice and that aberrant activation of Wnt signaling contributes to the development of EAE-related chronic pain.
Insights
Wnt signaling pathways are activated in the spinal cord dorsal horn of mice with experimental autoimmune encephalomyelitis (EAE), contributing to chronic pain development. Inhibiting Wnt5a or β-catenin reduced pain sensitivity in these mice.
Area of Science:
- Neuroscience
- Immunology
- Molecular Biology
Background:
- Chronic pain is a common complication in multiple sclerosis (MS) patients.
- The pathological mechanisms underlying MS-related chronic pain remain largely unknown.
- Experimental autoimmune encephalomyelitis (EAE) in mice models MS-related neurological deficits and chronic pain.
Purpose of the Study:
- To investigate the role of Wnt signaling pathways in the pathogenesis of chronic pain in a mouse model of MS.
- To characterize the expression of Wnt signaling proteins in the spinal cord dorsal horn (SCDH) of EAE mice.
Main Methods:
- EAE was induced in C57BL/6 mice using myelin oligodendrocyte glycoprotein (MOG) 35-55.
- Wnt signaling protein expression in the SCDH was analyzed using immunoblotting and immunostaining.
- Mechanical hyperalgesia and allodynia were assessed.
- The effects of Wnt5a antagonist Box5 and β-catenin inhibitor indomethacin on pain behaviors were evaluated.
Main Results:
- EAE mice developed significant mechanical hyperalgesia and allodynia in both fore- and hindpaws.
- Wnt3a and β-catenin (canonical Wnt pathway) were significantly increased in the SCDH of EAE mice.
- Wnt5a and its receptor Ror2 (non-canonical Wnt pathway) were also upregulated in the SCDH of EAE mice.
- Administration of Box5 and indomethacin attenuated mechanical allodynia in EAE mice.
Conclusions:
- Wnt signaling pathways are aberrantly activated in the spinal cord dorsal horn during EAE.
- Aberrant Wnt signaling contributes to the development of chronic pain in the EAE model.
- Targeting Wnt signaling pathways may offer a therapeutic strategy for chronic pain in MS.
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