Distinct Gut Microbiota Composition and Functional Category in Children With Cerebral Palsy and Epilepsy

Congfu Huang1, Yinhu Li2, Xin Feng3

  • 1Department of Pediatrics, Longgang District Maternity and Child Healthcare Hospital of Shenzhen City, Shenzhen, China

Frontiers in Pediatrics
|October 25, 2019
PubMed

Insights

Children with cerebral palsy (CP) and epilepsy show higher gut microbial diversity. Specific bacteria like Bifidobacterium and Streptococcus are enriched, while Bacteroides are reduced, impacting neuroinflammation and metabolism.

Area of Science:

  • Microbiology
  • Neuroscience
  • Pediatrics

Background:

  • Cerebral palsy (CP) and epilepsy often co-occur in children, with treatments potentially causing developmental side effects.
  • The gut-brain axis highlights the gut microbiota's role in neurological conditions.
  • Gut microbiota modulation presents a potential therapeutic avenue for CP and epilepsy.

Purpose of the Study:

  • To characterize gut microbiota composition and function in children with both CP and epilepsy (CPE).
  • To investigate gut microbiota alterations associated with neurological conditions in pediatric patients.

Main Methods:

  • Collected fecal samples from 25 children with CPE and 21 healthy children.
  • Performed 16S rDNA sequencing to analyze gut microbiota composition.
  • Utilized KEGG annotation for functional enrichment analysis.

Main Results:

  • CPE group exhibited significantly higher gut microbial diversity compared to healthy controls.
  • Enriched genera in CPE group included Bifidobacterium, Streptococcus, and Akkermansia; reduced genera included Bacteroides and Faecalibacterium.
  • Functional analysis revealed enrichment in xenobiotics metabolism and immune/neurodegenerative disease pathways, with reduced secondary metabolite biosynthesis.

Conclusions:

  • Gut microbiota composition and function are significantly altered in children with CP and epilepsy.
  • Specific bacterial alterations correlate with potential disease mechanisms, including neuroinflammation.
  • Findings support the gut microbiota as a potential therapeutic target for pediatric neurological disorders.