NPJ biofilms and microbiomes

The ketogenic diet changes the types and functions of gut bacteria in children with severe epilepsy

Updated

Abstract

Fecal samples from 12 children with therapy-resistant epilepsy showed significant changes in gut bacteria after 3 months on a .

  • of did not change significantly during the ketogenic diet.
  • Both taxonomic and functional compositions of the gut microbiota exhibited differences after the diet intervention.
  • The relative abundance of bifidobacteria significantly decreased, while the abundance of E. coli increased on the ketogenic diet.
  • Functional analysis indicated alterations in 29 biological pathways, including a reduction in seven pathways related to carbohydrate metabolism.
  • The decline of fiber-consuming bacteria raises concerns about the ketogenic diet's effects on gut microbiota and overall health.

Simplified

Key numbers

15.8% to 3.9%
Decrease in Bifidobacteria
Relative abundance before and after 3 months on KD.
29
Functional pathways affected
Number of SEED subsystems significantly altered during KD.
12
Participants enrolled
Number of children with epilepsy starting the .

Full Text

What this is

  • This research investigates the impact of the (KD) on the of children with severe epilepsy.
  • Fecal samples were collected from 12 children before and after 3 months on KD, alongside samples from 11 healthy parents as controls.
  • Using shotgun metagenomic sequencing, both taxonomic and functional changes in the gut microbiome were assessed.

Essence

  • The alters the composition in children with severe epilepsy, reducing beneficial bifidobacteria and affecting functional pathways related to carbohydrate metabolism.

Key takeaways

  • The significantly reduces the relative abundance of bifidobacteria, a beneficial gut bacteria genus, in children with epilepsy after 3 months.
  • Functional analysis revealed significant changes in 29 subsystems, particularly in carbohydrate metabolism pathways, indicating a shift in microbial function due to the diet.
  • Despite changes in microbiota composition, remained largely unchanged, suggesting that overall species diversity did not significantly decline during the diet.

Caveats

  • The study's small sample size (12 patients) limits the generalizability of the findings and necessitates further research with larger cohorts.
  • The lack of age-matched controls may influence the interpretation of the microbiota changes observed in the patients.

Definitions

  • Gut microbiota: The community of microorganisms residing in the gastrointestinal tract, influencing health and disease.
  • Ketogenic diet: A high-fat, low-carbohydrate diet designed to induce ketosis, used for managing epilepsy and other conditions.
  • Alpha diversity: A measure of species diversity within a single sample, indicating the variety of species present.

Simplified

Funding

Competing interests

The authors declare no competing interests.
PubMed

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