Gut microbiota dysbiosis linked to constipation in children with allergic rhinitis :- Medznat
EN | RU
EN | RU

Help Support

By clicking the "Submit" button, you accept the terms of the User Agreement, including those related to the processing of your personal data. More about data processing in the Policy.
Back

Scientists uncover gut–metabolism connection in children with constipation and AR

Allergic rhinitis in children Allergic rhinitis in children
Allergic rhinitis in children Allergic rhinitis in children

What's new?

Gut microbiota dysbiosis and altered amino acid metabolism are associated with constipation in children with allergic rhinitis, highlighting Hungatella and indoxyl sulfate as potential biomarkers.

Could the gut microbiome help explain the gut symptoms seen in children with allergic rhinitis (AR)? Novel research points to a potential connection between intestinal bacteria, amino acid metabolism, and constipation.

AR remains one of the most common chronic allergic conditions in children and is frequently accompanied by gastrointestinal complaints, including constipation. Growing evidence suggests that the gut microbiota (GM) influences both immune regulation and digestive function, yet the biological mechanisms connecting AR and constipation are still not fully understood. Hence, researchers investigated whether alterations in GM communities and fecal metabolic profiles were associated with constipation in children diagnosed with AR, with the goal of identifying potential microbial and metabolic factors involved in disease development.

The study enrolled 37 pediatric participants, including 21 children with AR and 16 children with AR complicated by constipation (ARFC group). Fecal samples were collected from all participants and analyzed using absolute quantitative 16S rRNA gene sequencing to characterize GM composition. In parallel, non-targeted metabolomic profiling was performed to assess changes in fecal metabolites. Correlation analyses were subsequently conducted to examine relationships between microbial abundance and metabolic alterations.

The analysis revealed distinct microbial and metabolic alterations in the ARFC group, highlighting potential biological mechanisms underlying this comorbidity.

  • Children with AR and constipation showed a significantly different GM profile compared with those who had AR alone.
  • The abundance of Hungatella was markedly increased in the constipation group.
  • Beneficial bacterial genera, including Bifidobacterium and Blautia, were reduced among children with concurrent constipation.
  • Fecal metabolomic profiling identified elevated levels of indoxyl sulfate in the affected children.
  • Several amino acid-related metabolites, particularly aromatic and branched-chain amino acid metabolites, were markedly decreased.
  • Pathway enrichment analysis indicated disruptions in amino acid metabolism and nutrient absorption processes.
  • Correlation analysis illustrated a positive association between increased Hungatella abundance and higher indoxyl sulfate levels.
  • Reduced levels of beneficial gut bacteria were linked to impaired amino acid metabolism, suggesting a close interaction between microbial imbalance and metabolic dysfunction.

Together, the findings suggest that constipation in children with AR may be linked with a microbiome–metabolism imbalance, rather than being an isolated gastrointestinal problem. Hungatella and indoxyl sulfate may represent potential biomarkers for identifying constipation in AR-affected children.

Source:

Microbiology Spectrum

Article:

Gut microbiota dysbiosis and amino acid metabolic dysregulation in children with allergic rhinitis complicated by constipation

Authors:

Shen Lv et al.

Comments (0)

You want to delete this comment? Please mention comment Invalid Text Content Text Content cannot me more than 1000 Something Went Wrong Cancel Confirm Confirm Delete Hide Replies View Replies View Replies en
Try: