Distinct oral and fecal microbiota composition in preschool children with overweight/obesity: a cross-sectional study

Hanguo Feng1,2,3, Xinyi Zeng4, Siyuan Yu1,2

  • 1Yunnan Key Laboratory of Stomatology, School of Stomatology, Kunming Medical University, Kunming, 650106, China.

Insights

Childhood obesity is linked to altered gut and oral bacteria. Overweight children show reduced fecal microbial diversity and weaker oral-fecal bacteria correlations, suggesting microbial dysbiosis.

Area of Science:

  • Microbiome research
  • Pediatric health
  • Obesity studies

Background:

  • Limited research exists on oral and gut microbiota in relation to childhood obesity.
  • Preschool-aged children are a critical developmental stage for obesity onset.

Purpose of the Study:

  • To investigate microbial differences in oral and fecal samples of preschool children with and without overweight/obesity.
  • To correlate microbial findings with clinical parameters like BMI and skin-fold thickness.
  • To explore the relationship between oral and fecal microbiota in this age group.

Main Methods:

  • Collected saliva, oral mucosal plaque, dental plaque, and fecal samples from 47 overweight/obese and 34 normal-weight children (ages 3-6).
  • Performed 16S rRNA gene sequencing for microbial analysis.
  • Analyzed microbial abundance, diversity, and correlations with clinical data.

Main Results:

  • Overweight/obese children had lower fecal microbiota richness and diversity.
  • Distinct microbial signatures were found in oral (saliva, plaque) and fecal samples, varying by weight status.
  • Oral bacteria showed weaker negative correlations with fecal bacteria in overweight/obese children.
  • Microbial shifts correlated with body mass index (BMI) and skin-fold thickness (SFT).

Conclusions:

  • Preschool children with overweight/obesity exhibit distinct oral and gut microbial profiles.
  • Microbial dysbiosis may play a role in the development of childhood obesity.
  • Findings provide a basis for future obesity prevention and intervention strategies targeting the microbiome.

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