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Updated: Feb 6, 2026

Implanting Glass Spinal Cord Windows in Adult Mice with Experimental Autoimmune Encephalomyelitis
Published on: December 21, 2013
Increased expression of colony-stimulating factor-1 in mouse spinal cord with experimental autoimmune
Svetlana Gushchina1,2, Gareth Pryce1, Ping K Yip1
1Centre for Neuroscience and Trauma, Blizard Institute, Barts and the London School of Medicine and Dentistry, Queen Mary University of London, London, E1 2AT, United Kingdom.
Abstract:
Microglia contribute to pathophysiology at all stages of multiple sclerosis. Colony-stimulating factor-1 (CSF1) is crucial for microglial proliferation and activation. In this study we measured the CSF1 levels and studied its cellular expression in the mouse spinal cords with experimental autoimmune encephalomyelitis (EAE) to explore the potential contribution of CSF1 in neuronal death. ELISA data showed that CSF1 levels were significantly higher in the spinal cords with acute and chronic EAE than those of normal and adjuvant-injected mice. Immunohistochemical studies demonstrated that CSF1 was expressed in astrocytes and neurons in normal mouse spinal cord. In acute EAE, CSF1 expression was significantly increased, especially in astrocytes in peripheral white matter and large motoneurons. High density of activated microglia was observed in the gray matter where motoneurons expressed high-level CSF1 in acute EAE. Significant large motoneuron loss was seen in chronic EAE and the remaining motoneurons with high-level CSF1 were enwrapped by microglia. Viral vector mediated over-expression of CSF1 in spinal neurons induced profound proliferation and activation of microglia at the injection site and microglia enwrapped CSF1-transduced neurons and their neurites. Significant loss of large CSF1-transduced neurons was seen at 2 and 3 weeks post-viral injection. Demyelination in the CSF1-transduced areas was also significant. These results implicate that CSF1 upregulation in CNS may play an important role in the proliferation and activation of microglia in EAE, contributing to neuroinflammation and neurodegeneration. © 2018 Wiley Periodicals, Inc.
Insights
Colony-stimulating factor-1 (CSF1) upregulation in the central nervous system (CNS) drives microglial activation and proliferation, contributing to neuroinflammation and neuronal death in experimental autoimmune encephalomyelitis (EAE).
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Microglia are key players in multiple sclerosis (MS) pathophysiology.
- Colony-stimulating factor-1 (CSF1) is essential for microglial proliferation and activation.
Purpose of the Study:
- To investigate the role of CSF1 in neuronal death during experimental autoimmune encephalomyelitis (EAE).
- To measure CSF1 levels and analyze its cellular expression in mouse spinal cords during EAE.
Main Methods:
- Enzyme-linked immunosorbent assay (ELISA) to quantify CSF1 levels.
- Immunohistochemistry to determine CSF1 cellular expression.
- Viral vector-mediated CSF1 overexpression in spinal neurons.
Main Results:
- CSF1 levels were significantly elevated in EAE spinal cords compared to controls.
- CSF1 expression increased in astrocytes and motoneurons during acute EAE.
- Overexpression of CSF1 led to microglial activation, neuronal loss, and demyelination in vivo.
Conclusions:
- Upregulated CSF1 in the CNS promotes microglial proliferation and activation in EAE.
- CSF1 contributes to neuroinflammation and neurodegeneration in the context of EAE.
- Targeting CSF1 may offer therapeutic potential for MS and related neuroinflammatory conditions.
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