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Published on: March 16, 2016
Probiotic-Fermented Camel Milk Attenuates Neurodegenerative Symptoms via SOX5/miR-218 Axis Orchestration in Mouse
Ashraf Khalifa1,2, Hairul Islam Mohamed Ibrahim1,3, Abdullah Sheikh4
1Biological Science Department, College of Science, King Faisal University, P.O. Box 400, Al-Ahsa 31982, Saudi Arabia.
Abstract:
Multiple sclerosis is an autoimmune-mediated myelin damage disorder in the central nervous system that is widespread among neurological patients. It has been demonstrated that several genetic and epigenetic factors control autoimmune encephalomyelitis (EAE), a murine model of MS, through CD4+ T-cell population quantity. Alterations in the gut microbiota influence neuroprotectiveness via unexplored mechanisms. In this study, the ameliorative effect of Bacillus amyloliquefaciens fermented in camel milk (BEY) on an autoimmune-mediated neurodegenerative model using myelin oligodendrocyte glycoprotein/complete fraud adjuvant/pertussis toxin (MCP)-immunized C57BL6j mice is investigated. Anti-inflammatory activity was confirmed in the in vitro cell model, and inflammatory cytokines interleukins IL17 (from EAE 311 to BEY 227 pg/mL), IL6 (from EAE 103 to BEY 65 pg/mL), IFNγ (from EAE 423 to BEY 243 pg/mL) and TGFβ (from EAE 74 to BEY 133 pg/mL) were significantly reduced in BEY-treated mice. The epigenetic factor miR-218-5P was identified and confirmed its mRNA target SOX-5 using in silico tools and expression techniques, suggesting SOX5/miR-218-5p could serve as an exclusive diagnostic marker for MS. Furthermore, BEY improved the short-chain fatty acids, in particular butyrate (from 0.57 to 0.85 µM) and caproic (from 0.64 to 1.33 µM) acids, in the MCP mouse group. BEY treatment significantly regulated the expression of inflammatory transcripts in EAE mice and upregulated neuroprotective markers such as neurexin (from 0.65- to 1.22-fold) (p < 0.05), vascular endothelial adhesion molecules (from 0.41- to 0.76-fold) and myelin-binding protein (from 0.46- to 0.89-fold) (p < 0.03). These findings suggest that BEY could be a promising clinical approach for the curative treatment of neurodegenerative diseases and could promote the use of probiotic food as medicine.
Insights
Bacillus amyloliquefaciens fermented in camel milk (BEY) shows anti-inflammatory effects in a mouse model of multiple sclerosis (MS). BEY treatment reduced inflammatory cytokines and improved neuroprotective markers, suggesting its potential as a probiotic therapy for neurodegenerative diseases.
Area of Science:
- Neuroscience
- Immunology
- Microbiology
Background:
- Multiple sclerosis (MS) is a central nervous system autoimmune disorder.
- Genetic and epigenetic factors influence MS pathogenesis, particularly CD4+ T-cell populations.
- Gut microbiota alterations may impact neuroprotection through unknown mechanisms.
Purpose of the Study:
- To investigate the ameliorative effects of Bacillus amyloliquefaciens fermented in camel milk (BEY) on an autoimmune neurodegenerative model.
- To assess the anti-inflammatory activity and impact on neuroprotective markers in a mouse model of MS.
- To explore the potential of BEY as a therapeutic agent for neurodegenerative diseases.
Main Methods:
- Utilized a mouse model of MS induced by myelin oligodendrocyte glycoprotein/complete Freund's adjuvant/pertussis toxin (MCP).
- Administered BEY to MCP-immunized mice and evaluated in vitro anti-inflammatory activity.
- Analyzed inflammatory cytokines (IL-17, IL-6, IFNγ, TGFβ), epigenetic factors (miR-218-5P, SOX-5), short-chain fatty acids, and neuroprotective markers (neurexin, VCAM, MBP).
Main Results:
- BEY treatment significantly reduced key inflammatory cytokines in EAE mice.
- Identified miR-218-5P and its target SOX-5, suggesting their potential as MS diagnostic markers.
- BEY increased beneficial short-chain fatty acids (butyrate, caproic acid) and upregulated neuroprotective markers like neurexin and myelin-binding protein.
Conclusions:
- BEY exhibits significant anti-inflammatory and neuroprotective effects in an MS mouse model.
- BEY may modulate epigenetic factors and improve gut microbiota composition.
- These findings support BEY as a potential probiotic therapeutic strategy for neurodegenerative conditions.

