Pharmaceuticals (Basel, Switzerland)

How Fermented Ginseng and Natto Products May Protect Against Alzheimer's Disease Through Gut Bacteria and Metabolism

Updated

Abstract

Essence

Ginseng-natto fermentation products may protect scopolamine-model mice by reshaping gut microbes and metabolites and restoring markers.

Evidence

Preclinical mouse experiment tested 4 weeks of low- or high-dose GN before scopolamine induction, using behavior, histology, biochemical markers, 16S rRNA, metabolomics, and BBB protein assays.

Caveat

The evidence is limited to an induced mouse model with pathway markers, not human Alzheimer disease or clinical outcomes.

Simplified

Key numbers

2 of 6 days
Increase in Cognitive Function
Days of improved performance in mice receiving GN vs. model group
14
Reduction in Pro-inflammatory Markers
Number of pro-inflammatory markers significantly reduced after GN treatment
45.41%
Increase in Beneficial Bacteria
Percentage increase in beneficial bacteria after GN intervention

Full Text

What this is

  • () is a leading cause of dementia, with a rising global prevalence.
  • Current treatments only provide symptomatic relief, highlighting the need for new interventions.
  • This study investigates Ginseng-Natto composite fermentation products (GN) for their potential neuroprotective effects in .
  • Using a mouse model, GN was evaluated for its impact on cognitive function, gut microbiota, and metabolic pathways.

Essence

  • Ginseng-Natto composite fermentation products (GN) significantly improved cognitive deficits and restored gut microbiota in mice. The intervention repaired integrity and modulated key metabolic pathways.

Key takeaways

  • GN intervention improved cognitive function in mice, as evidenced by the Morris Water Maze test. Mice receiving GN showed reduced escape latency and increased platform crossings compared to the model group.
  • GN restored normal levels of acetylcholine and antioxidant enzymes while reducing pro-inflammatory markers. This multi-target effect indicates GN's potential in addressing various pathological aspects of .
  • GN reshaped the gut microbiota, increasing beneficial bacteria and decreasing harmful strains. This modulation may contribute to its neuroprotective effects through the .

Caveats

  • The study was conducted in a mouse model, which may not fully replicate human pathology. Further clinical studies are necessary to validate these findings.
  • Long-term effects and safety of GN in humans remain unexplored, necessitating caution before clinical application.

Definitions

  • Alzheimer's disease (AD): A progressive neurodegenerative disorder leading to cognitive decline and dementia.
  • Gut-brain axis: The bidirectional communication between the gastrointestinal tract and the brain, influencing neurological function.
  • Blood-brain barrier (BBB): A selective permeability barrier formed by brain endothelial cells, protecting the brain from harmful substances.

Simplified

Funding

Competing interests

0 of 11
authors report competing interests
11 report none
PubMed

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