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.

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.