← Explorer/Network

The Role of Indoor Microbiome and Metabolites in Shaping Children’s Nasal and Oral Microbiota: A Pilot Multi-Omic Analysis

Mei Zhang, Hao Tang, Yiwen Yuan +6 more2023MetabolitesJournal Article
10.3390/metabo13101040PubMedFree full text
GastrointestinalImmune/InnateRespiratory/Sinus
Mycotoxins

Abstract

Maintaining a diverse and well-balanced nasal and oral microbiota is vital for human health. However, the impact of indoor microbiome and metabolites on nasal and oral microbiota remains largely unknown. Fifty-six children in Shanghai were surveyed to complete a questionnaire about their personal and environmental characteristics. The indoor microbiome and metabolites from vacuumed indoor dust were profiled via shotgun metagenomics and untargeted liquid chromatography-mass spectrometry (LC-MS). The nasal and oral microbiota in children was characterized using full-length 16S rRNA sequencing from PacBio. Associations between personal/environmental characteristics and the nasal/oral microbiota were calculated using PERMANOVA and regression analyses. We identified 6247, 431, and 342 microbial species in the indoor dust, nasal, and oral cavities, respectively. The overall nasal and oral microbial composition showed significant associations with environmental tobacco smoke (ETS) exposure during pregnancy and early childhood (p = 0.005 and 0.03, respectively), and the abundance of total indoor flavonoids and two mycotoxins (deoxynivalenol and nivalenol) (p = 0.01, 0.02, and 0.03, respectively). Notably, the abundance of several flavonoids, such as baicalein, eupatilin, isoliquiritigenin, tangeritin, and hesperidin, showed positive correlations with alpha diversity and the abundance of protective microbial taxa in nasal and oral cavities (p Moraxella catarrhalis, Streptococcus mitis, and Streptococcus salivarius), which could potentially increase virulence factors related to adherence and immune modulation and vancomycin resistance genes in children. This is the first study to reveal the association between the indoor microbiome/metabolites and nasal/oral microbiota using multi-omic approaches. These findings reveal potential protective and risk factors related to the indoor microbial environment.

References (1)

  • Indoor microbiome and allergic diseases: From theoretical advances to prevention strategiesEco-Environment & Health · 2022

Related Papers

  • Timing of gene expression alters susceptibility to aflatoxicosis: a heterogeneous spectrum of disease in response to a single universal agentEgyptian Journal of Medical Human Genetics · 2025 · 4 shared tags
  • 30+ years of knowledge creation: Indoor Air 1991–2021Indoor Air · 2022 · 4 shared tags
  • Medizinisch klinische Diagnostik bei Schimmelpilzexposition in Innenräumen – Update 2023 (AWMF-Register-Nr. 161/001)Pneumologie · 2024 · 4 shared tags
  • Synergistic interaction in simultaneous exposure to Streptomyces californicus and Stachybotrys chartarumEnvironmental Health Perspectives · 2004 · 4 shared tags
  • Comparison of inflammatory and cytotoxic lung responses in mice after intratracheal exposure to spores of two different Stachybotrys chartarum strainsToxicological Sciences · 2004 · 4 shared tags
  • Localization of Satratoxin-G in Stachybotrys chartarum Spores and Spore-Impacted Mouse Lung Using ImmunocytochemistryToxicologic Pathology · 2004 ·
4 shared tags