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Induction of Experimental Autoimmune Encephalomyelitis in Mice and Evaluation of the Disease-dependent Distribution of Immune Cells in Various Tissues
Published on: May 8, 2016
A protective role for ELR+ chemokines during acute viral encephalomyelitis
Martin P Hosking1, Liping Liu, Richard M Ransohoff
1Department of Molecular Biology and Biochemistry, University of California, Irvine, California, USA.
Abstract:
The functional role of ELR-positive CXC chemokines in host defense during acute viral-induced encephalomyelitis was determined. Inoculation of the neurotropic JHM strain of mouse hepatitis virus (JHMV) into the central nervous system (CNS) of mice resulted in the rapid mobilization of PMNs expressing the chemokine receptor CXCR2 into the blood. Migration of PMNs to the CNS coincided with increased expression of transcripts specific for the CXCR2 ELR-positive chemokine ligands CXCL1, CXCL2, and CXCL5 within the brain. Treatment of JHMV-infected mice with anti-CXCR2 blocking antibody reduced PMN trafficking into the CNS by >95%, dampened MMP-9 activity, and abrogated blood-brain-barrier (BBB) breakdown. Correspondingly, CXCR2 neutralization resulted in diminished infiltration of virus-specific T cells, an inability to control viral replication within the brain, and 100% mortality. Blocking CXCR2 signaling did not impair the generation of virus-specific T cells, indicating that CXCR2 is not required to tailor anti-JHMV T cell responses. Evaluation of mice in which CXCR2 is genetically silenced (CXCR2-/- mice) confirmed that PMNs neither expressed CXCR2 nor migrated in response to ligands CXCL1, CXCL2, or CXCL5 in an in vitro chemotaxis assay. Moreover, JHMV infection of CXCR2-/- mice resulted in an approximate 60% reduction of PMN migration into the CNS, yet these mice survived infection and controlled viral replication within the brain. Treatment of JHMV-infected CXCR2-/- mice with anti-CXCR2 antibody did not modulate PMN migration nor alter viral clearance or mortality, indicating the existence of compensatory mechanisms that facilitate sufficient migration of PMNs into the CNS in the absence of CXCR2. Collectively, these findings highlight a previously unappreciated role for ELR-positive chemokines in enhancing host defense during acute viral infections of the CNS.
Insights
ELR-positive CXC chemokines, specifically CXCR2, are crucial for host defense against viral encephalomyelitis. Blocking CXCR2 impairs immune cell migration and increases mortality, revealing its vital role in central nervous system infections.
Area of Science:
- Neuroimmunology
- Virology
- Immunology
Background:
- Acute viral infections of the central nervous system (CNS) can lead to severe outcomes.
- The role of specific chemokine pathways in host defense during viral encephalomyelitis is not fully understood.
Purpose of the Study:
- To determine the functional role of ELR-positive CXC chemokines in host defense during acute viral-induced encephalomyelitis.
- To investigate the involvement of the CXCR2 receptor and its ligands in the inflammatory response to JHMV infection in the CNS.
Main Methods:
- Infection of mice with the neurotropic JHM strain of mouse hepatitis virus (JHMV).
- Administration of anti-CXCR2 blocking antibody or evaluation of CXCR2 knockout (CXCR2-/-) mice.
- Assessment of polymorphonuclear cell (PMN) trafficking, chemokine and matrix metalloproteinase (MMP) expression, blood-brain barrier (BBB) integrity, T cell responses, viral replication, and mortality.
Main Results:
- Blocking CXCR2 significantly reduced PMN trafficking into the CNS, dampened MMP-9 activity, and prevented BBB breakdown.
- CXCR2 neutralization led to impaired viral control, diminished virus-specific T cell infiltration, and 100% mortality.
- CXCR2-/- mice showed reduced PMN migration but survived infection and controlled viral replication, suggesting compensatory mechanisms.
Conclusions:
- ELR-positive CXC chemokines, particularly via CXCR2, play a critical role in orchestrating PMN recruitment and host defense during acute viral CNS infections.
- CXCR2 is essential for controlling viral replication and preventing mortality in JHMV-induced encephalomyelitis.
- Compensatory pathways exist for PMN migration into the CNS in the absence of CXCR2, allowing for survival and viral clearance.
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