StayCurrentMD · Children with Hirschsprung disease exhibited alterations in host–microbial co-metabolism after pull-through operation
Article1 min read·Published Mar 2024Older

Children with Hirschsprung disease exhibited alterations in host–microbial co-metabolism after pull-through operation

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Article · Mar 2024 · 1 min read

In brief

In brief

This NMR spectroscopy study reveals altered fecal metabolomes in children under 5 following Hirschsprung disease pull-through surgery, with distinct metabolic profiles between those with and without HAEC. Significant decreases in key metabolites and disrupted amino acid metabolism pathways suggest ongoing intestinal dysfunction post-operatively, highlighting potential targets for monitoring and intervention.

  • Post-operative Hirschsprung patients show distinct fecal metabolite profiles compared to healthy children, particularly in amino acid metabolism.
  • Children with HAEC after pull-through have significantly lower succinate and xylose levels than those without HAEC complications.
  • Acetoin, phenylacetylglutamine, and N-acetylornithine are significantly decreased in all post-pull-through HD patients versus controls.
  • Glutamine/glutamate metabolism pathways are significantly altered, suggesting disrupted intestinal integrity and function after surgery.
  • NMR spectroscopy of fecal metabolome may help identify biomarkers for HAEC risk stratification in post-operative HD patients.

Written by the GCMD Library team from the article.

Abstract

Purpose

This study aims to compare the fecal metabolome in post pull-through HD with and without HAEC patients and healthy young children using nuclear magnetic resonance (NMR) spectroscopy.

Methods

Fresh fecal samples were collected from children under 5 years of age in both post-pull-through HD patients and healthy Thai children. A total of 20 fecal samples were then analyzed using NMR spectroscopy.

Results

Thirty-four metabolites identified among HD and healthy children younger than 5 years were compared. HD samples demonstrated a significant decrease in acetoin, phenylacetylglutamine, and N-acetylornithine (corrected p value = 0.01, 0.04, and 0.004, respectively). Succinate and xylose significantly decreased in HD with HAEC group compared to HD without HAEC group (corrected p value = 0.04 and 0.02, respectively). Moreover, glutamine and glutamate metabolism, and alanine, aspartate, and glutamate metabolism were the significant pathways involved, with pathway impact 0.42 and 0.50, respectively (corrected p value = 0.02 and 0.04, respectively).

Conclusion

Differences in class, quantity, and metabolism of protein and other metabolites in young children with HD after pull-through operation were identified. Most of the associated metabolic pathways were correlated with the amino acids metabolism, which is required to maintain intestinal integrity and function.

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