Differences in salivary microbiome among children with tonsillar hypertrophy and/or adenoid hypertrophy

Ying Xu1, Min Yu1, Xin Huang2

  • 1Department of Orthodontics, Peking University School and Hospital of Stomatology, Beijing, China.

Msystems
|September 17, 2024
PubMed

Insights

Children with tonsillar hypertrophy have distinct salivary microbiome profiles, differing from those with adenoid hypertrophy. This suggests the location of airway obstruction, not its severity, shapes the oral microbiome in pediatric patients.

Area of Science:

  • Microbiology
  • Pediatric Otolaryngology
  • Oral Microbiome Research

Background:

  • Tonsillar hypertrophy is a common cause of upper airway obstruction and obstructive sleep apnea (OSA) in children.
  • Distinct craniofacial features are observed in children with tonsillar hypertrophy versus adenoid hypertrophy.
  • Previous research identified unique salivary microbiota in children with OSA.

Purpose of the Study:

  • To characterize the salivary microbial profile in children with tonsillar hypertrophy.
  • To explore the functional implications of these microbial alterations.
  • To investigate the influence of obstruction site on the salivary microbiome.

Main Methods:

  • 16S rRNA sequencing of V3-V4 regions was used to analyze salivary microbial profiles.
  • Saliva samples were collected from 112 children across tonsillar hypertrophy, adenoid hypertrophy, adenotonsillar hypertrophy, and control groups.
  • Microbiome diversity, composition, and correlations with polysomnography and blood count parameters were assessed.

Main Results:

  • Children with tonsillar hypertrophy exhibited significantly higher alpha-diversity indices.
  • Beta-diversity analysis showed a slight separation in salivary microbiome composition for the tonsillar hypertrophy group.
  • Specific genera including Gemella, Parvimonas, Dialister, and Lactobacillus were more abundant in tonsillar hypertrophy, potentially indicating immune regulation.

Conclusions:

  • Pediatric tonsillar hypertrophy is associated with distinct salivary microbiome signatures.
  • The primary site of upper airway obstruction significantly influences the salivary microbiome.
  • Microbiome alterations in tonsillar hypertrophy may play a role in immune regulation.

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