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Determining Immune System Suppression versus CNS Protection for Pharmacological Interventions in Autoimmune Demyelination
Published on: September 12, 2016
Central neuroinvasion and demyelination by inflammatory macrophages after peripheral virus infection is controlled by
George P Christophi1, Paul T Massa
1Department of Neurology, Upstate Medical University, State University of New York, Syracuse, New York 13210, USA.
Abstract:
SHP-1 is a protein tyrosine phosphatase that negatively regulates cytokine signaling and inflammatory gene expression. Mice genetically lacking SHP-1 (me/me) display severe inflammatory demyelinating disease following intracranial inoculation with the BeAn strain of Theiler's murine encephalomyelitis virus (TMEV) compared to infected wild-type mice. Furthermore, SHP-1-deficient mice show a profound and predominant infiltration of blood-derived macrophages into the CNS following intracerebral injection of TMEV, and these macrophages are concentrated in areas of demyelination in brain and spinal cord. In the present study we investigated the role of SHP-1 in controlling CNS inflammatory demyelination following a peripheral instead of an intracerebral inoculation of TMEV. Surprisingly, we found that while wild-type mice were entirely refractory to intraperitoneal (IP) infection by TMEV, in agreement with previous studies, all SHP-1-deficient mice displayed profound macrophage neuroinvasion and macrophage-mediated inflammatory demyelination. Moreover, SHP-1 deficiency led to increased expression of inflammatory molecules in macrophages, serum, and CNS following IP infection with TMEV. Importantly, pharmacological depletion of peripheral macrophages significantly decreased both paralysis and CNS viral loads in SHP-1-deficient mice. In addition, peripheral MCP-1 neutralization attenuated disease severity, decreased macrophage infiltration into the CNS, and decreased monocyte numbers in the blood of SHP-1-deficient mice, implicating MCP-1 as an important mediator of monocyte migration between multiple tissues. These results demonstrate that peripheral TMEV infection results in a unique evolution of macrophage-mediated demyelination in SHP-1-deficient mice, implicating SHP-1 in the control of neuroinvasion of inflammatory macrophages and neurotropic viruses into the CNS.
Insights
Mice lacking SHP-1 (a key phosphatase) develop severe demyelination after peripheral TMEV infection, showing increased macrophage invasion. SHP-1 is crucial for controlling inflammatory macrophage entry into the central nervous system.
Area of Science:
- Neuroimmunology
- Virology
- Molecular Biology
Background:
- SHP-1 (a protein tyrosine phosphatase) normally limits inflammatory responses.
- SHP-1 deficiency causes severe demyelination and macrophage infiltration in the CNS after direct TMEV brain infection.
- The role of SHP-1 in peripheral viral infections leading to CNS demyelination is unclear.
Purpose of the Study:
- To investigate the role of SHP-1 in controlling CNS inflammatory demyelination after peripheral TMEV infection.
- To determine if SHP-1 deficiency affects macrophage infiltration and inflammatory molecule expression following peripheral TMEV exposure.
Main Methods:
- Mice genetically lacking SHP-1 (me/me) and wild-type mice were infected intraperitoneally (IP) with Theiler's murine encephalomyelitis virus (TMEV).
- Evaluated macrophage infiltration into the CNS, inflammatory gene/molecule expression in macrophages, serum, and CNS.
- Utilized pharmacological depletion of peripheral macrophages and MCP-1 neutralization in SHP-1-deficient mice.
Main Results:
- Wild-type mice were refractory to IP TMEV infection, while SHP-1-deficient mice developed severe macrophage neuroinvasion and demyelination.
- SHP-1 deficiency increased inflammatory molecule expression and macrophage infiltration into the CNS post-IP TMEV infection.
- Depleting peripheral macrophages or neutralizing MCP-1 significantly reduced paralysis, viral load, and CNS macrophage infiltration in SHP-1-deficient mice.
Conclusions:
- SHP-1 plays a critical role in preventing macrophage neuroinvasion and subsequent demyelination following peripheral TMEV infection.
- Peripheral TMEV infection in SHP-1-deficient mice leads to a unique macrophage-mediated demyelination pathway.
- MCP-1 is implicated as a key mediator of monocyte migration, contributing to CNS demyelination in this model.
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