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Mucosal Administration of E-selectin Limits Disability in Models of Multiple Sclerosis
Jacqueline A Quandt1, Pierre Becquart1, Emily Kamma1
1Department of Pathology and Laboratory Medicine, University of British Columbia, Vancouver, BC, Canada.
Abstract:
E-selectin plays an important role in mediating the rolling of leukocytes along and thus, the subsequent extravasation across activated endothelial cells comprising the microvasculature of the blood brain barrier (BBB). In multiple sclerosis (MS) and other inflammatory disorders of the central nervous system (CNS), the microvasculature is altered and immune cells infiltrate the brain and spinal cord contributing to damage, demyelination and ultimately disability. While mucosal administration is typically used to affect lymphocyte hyporesponsiveness or tolerance to suspect autoantigens, intranasal administration to E-selectin has previously been shown to protect against CNS inflammatory insults. We characterized the potential for mucosal administration of E-selectin to modulate CNS autoimmunity in the experimental autoimmune encephalomyelitis (EAE) model of MS. Intranasally administered E-selectin reduced swelling by as much as 50% in delayed-type hypersensitivity reactions compared to ovalbumin-tolerized controls. Intranasal E-selectin delivery prior to disease induction with myelin oligodendrocyte glycoprotein (MOG)35-55 reduced disease severity and total disease burden by more than 50% compared to PBS-tolerized animals; this protection was not associated with differences in the magnitude of the autoimmune response. Examination after the onset of disease showed that protection was associated with significant reductions in inflammatory infiltrates throughout the spinal cord. Tolerization to E-selectin did not influence encephalitogenic characteristics of autoreactive T cells such as IFN-gamma or IL-17 production. Clinical disease was also significantly reduced when E-selectin was first delivered after the onset of clinical symptoms. Splenic and lymph node (LN) populations from E-selectin-tolerized animals showed E-selectin-specific T cell responses and production of the immunomodulatory cytokine IL-10. Transfer of enriched CD4+ T cells from E-selectin tolerized mice limited disability in the passive SJL model of relapsing remitting MS. These results suggest a role for influencing E-selectin specific responses to limit neuroinflammation that warrants further exploration and characterization to better understand its potential to mitigate neurodegeneration in disorders such as MS.
Insights
Intranasal E-selectin administration reduces central nervous system (CNS) inflammation and disease severity in multiple sclerosis (MS) models. This approach shows promise for mitigating neuroinflammation and neurodegeneration in CNS disorders.
Area of Science:
- Neuroimmunology
- Cellular and Molecular Immunology
- Neurology
Background:
- E-selectin mediates leukocyte rolling and extravasation across the blood brain barrier (BBB).
- Altered microvasculature in CNS inflammatory disorders like multiple sclerosis (MS) facilitates immune cell infiltration, leading to damage.
- Intranasal administration of E-selectin has shown potential for protecting against CNS inflammatory insults.
Purpose of the Study:
- To investigate the efficacy of intranasal E-selectin administration in modulating CNS autoimmunity.
- To characterize the effects of E-selectin tolerization on the experimental autoimmune encephalomyelitis (EAE) model of MS.
- To assess the therapeutic potential of E-selectin for mitigating neuroinflammation and neurodegeneration.
Main Methods:
- Intranasal administration of E-selectin in the EAE model of MS.
- Evaluation of delayed-type hypersensitivity reactions and disease severity after MOG35-55 induction.
- Analysis of inflammatory infiltrates, T cell responses (IFN-gamma, IL-17), and IL-10 production.
- Assessment of E-selectin-specific T cell responses in splenic and lymph node populations.
- Passive transfer studies using CD4+ T cells from tolerized mice.
Main Results:
- Intranasal E-selectin significantly reduced swelling in hypersensitivity reactions and decreased disease severity and burden in the EAE model by over 50%.
- Protection was observed even when E-selectin delivery occurred after clinical symptom onset.
- Reduced inflammatory infiltrates in the spinal cord were associated with E-selectin treatment.
- E-selectin tolerization induced E-selectin-specific T cell responses and IL-10 production, with CD4+ T cells limiting disability in a passive MS model.
Conclusions:
- Intranasal E-selectin administration is a promising strategy for reducing neuroinflammation and disease severity in MS models.
- Modulating E-selectin-specific immune responses can limit neuroinflammation and potentially mitigate neurodegeneration.
- Further research is warranted to fully understand the therapeutic potential of E-selectin for CNS disorders.
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