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Curdlan, a Microbial β-Glucan, Has Contrasting Effects on Autoimmune and Viral Models of Multiple Sclerosis
Fumitaka Sato1,2, Yumina Nakamura1, Aoshi Katsuki1
1Department of Microbiology, Kindai University Faculty of Medicine, Osakasayama, Osaka, Japan.
Abstract:
Multiple sclerosis (MS) is an immune-mediated disease characterized by inflammatory demyelination and axonal degeneration in the central nervous system (CNS). Bacterial and fungal infections have been associated with the development of MS; microbial components that are present in several microbes could contribute to MS pathogenesis. Among such components, curdlan is a microbial 1,3-β-glucan that can stimulate dendritic cells, and enhances T helper (Th) 17 responses. We determined whether curdlan administration could affect two animal models for MS: an autoimmune model, experimental autoimmune encephalomyelitis (EAE), and a viral model, Theiler's murine encephalomyelitis virus (TMEV)-induced demyelinating disease (TMEV-IDD). We induced relapsing-remitting EAE by sensitizing SJL/J mice with the myelin proteolipid protein (PLP)139-151 peptide and found that curdlan treatment prior to PLP sensitization converted the clinical course of EAE into hyperacute EAE, in which the mice developed a progressive motor paralysis and died within 2 weeks. Curdlan-treated EAE mice had massive infiltration of T cells and neutrophils in the CNS with higher levels of Th17 and Th1 responses, compared with the control EAE mice. On the other hand, in TMEV-IDD, we found that curdlan treatment reduced the clinical scores and axonal degeneration without changes in inflammation or viral persistence in the CNS. In summary, although curdlan administration exacerbated the autoimmune MS model by enhancing inflammatory demyelination, it suppressed the viral MS model with reduced axonal degeneration. Therefore, microbial infections may play contrasting roles in MS depending on its etiology: autoimmunity versus viral infection.
Insights
Curdlan, a microbial glucan, worsened autoimmune multiple sclerosis (MS) models by increasing inflammation. However, it protected against viral MS models by reducing axonal damage, suggesting microbes play dual roles in MS pathogenesis.
Area of Science:
- Neuroimmunology
- Microbial Immunology
- Demyelinating Diseases
Background:
- Multiple sclerosis (MS) is a CNS immune-mediated disorder with demyelination and axonal loss.
- Microbial components, like curdlan (a 1,3-β-glucan), may influence MS pathogenesis by stimulating immune cells.
- Curdlan is known to activate dendritic cells and enhance T helper 17 (Th17) responses.
Purpose of the Study:
- To investigate the impact of curdlan on two distinct animal models of MS.
- To determine if curdlan exacerbates or ameliorates disease in autoimmune versus viral MS models.
Main Methods:
- Experimental autoimmune encephalomyelitis (EAE) induced by myelin proteolipid protein (PLP) peptide in SJL/J mice.
- Theiler's murine encephalomyelitis virus (TMEV)-induced demyelinating disease (TMEV-IDD) model.
- Assessment of clinical scores, central nervous system (CNS) immune cell infiltration, Th17/Th1 responses, and axonal degeneration.
Main Results:
- In the autoimmune EAE model, curdlan pre-treatment led to hyperacute disease with rapid paralysis and mortality, associated with increased CNS T cells, neutrophils, and Th1/Th17 responses.
- In the viral TMEV-IDD model, curdlan treatment significantly reduced clinical scores and axonal degeneration.
- Curdlan did not alter inflammation or viral persistence in the TMEV-IDD model.
Conclusions:
- Curdlan exacerbates autoimmune MS models by enhancing inflammatory demyelination.
- Curdlan demonstrates a protective effect in viral MS models, reducing axonal degeneration.
- Microbial infections may have contrasting roles in MS pathogenesis depending on whether the etiology is primarily autoimmune or viral.
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