Alterations in gut microbiota and metabolite profiles in patients with infantile cholestasis

Meng Jin1, Jinghua Cui2, Huijuan Ning1

  • 1Gastroenterology Department, Children's Hospital Capital Institute of Pediatrics, Beijing, 100020, China.

BMC Microbiology
|November 19, 2023
PubMed

Insights

Infantile cholestasis (IC) in infants is linked to gut microbiota changes, with higher Veillonella and Streptococcus. This dysbiosis affects metabolism, potentially worsening liver damage.

Area of Science:

  • Microbiology
  • Gastroenterology
  • Metabolomics

Background:

  • Infantile cholestasis (IC) is a common infant hepatobiliary disease characterized by elevated direct bilirubin.
  • Hepatointestinal circulation plays a critical role in bile acid and bilirubin metabolism.
  • Altered gut microbiota composition and its associated metabolic profiles are implicated in IC pathogenesis.

Purpose of the Study:

  • To investigate the gut microbiota composition in infants with IC.
  • To identify abnormal metabolite profiles linked to microbial alterations in IC.
  • To explore the relationship between gut microbiota, metabolites, and clinical indices in IC.

Main Methods:

  • Comparative analysis of gut microbiota composition between IC infants and healthy controls.
  • Metabolomic profiling to identify altered metabolites in IC.
  • Correlation analysis between microbial abundance, metabolites, and clinical parameters (serum bile acid, APTT, PT, INR).

Main Results:

  • IC infants showed increased abundance of Veillonella, Streptococcus, and Clostridium spp. compared to controls.
  • Decreased abundance of Ruminococcus, Eubacterium coprostanoligenes group, Intestinibacter, and Faecalibacterium was observed in IC infants.
  • Elevated levels of specific fatty acids and decreased amino acids were found in IC infants, with correlations to specific microbial genera and clinical markers.

Conclusions:

  • Gut microbiota dysbiosis is present in infants with IC, contributing to metabolic abnormalities.
  • This dysbiosis can impair enteral nutrition absorption and exacerbate liver cell damage.
  • Veillonella, Ruminococcus, and Butyrivibrio are identified as potentially significant microbes in IC requiring further investigation.
Abstract

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