Longitudinal dynamics of respiratory microbiome composition in infants after new tracheostomy placement
Longitudinal dynamics of respiratory microbiome composition in infants after new tracheostomy placement

Longitudinal dynamics of respiratory microbiome composition in infants after new tracheostomy placement

BMJ Open Respir Res. 2026 Sep 9;13(1):e004378. doi: 10.1136/bmjresp-2026-004378.

ABSTRACT

OBJECTIVES: This prospective longitudinal study characterised respiratory microbiome dynamics following new tracheostomy placement among infants.

SETTING: A tertiary care paediatric hospital system in the United States.

PARTICIPANTS: Fifteen infants ≤12 months of age contributed 84 tracheal aspirate samples collected from day 1 through 3-4 months post-placement.

PRIMARY AND SECONDARY OUTCOME MEASURES: Bacterial composition, including abundance, from 16S rRNA gene sequencing; alpha and beta diversity measures over time.

RESULTS: 16S rRNA gene sequencing revealed immediate and sustained bacterial community shifts. Staphylococcus abundance increased and alpha diversity decreased in the first 30 days post-tracheostomy (p<0.05) before returning to baseline. Beta diversity demonstrated compositional changes immediately and with ongoing divergence through 3-4 months. Time and clinical factors (prematurity, ventilation and neurologic impairment) were significantly associated with microbiome structure (p=0.001).

CONCLUSIONS: This study provides novel evidence that new tracheostomy placement induces rapid and prolonged airway microbiome disruption in infants, highlighting a previously uncharacterised window of vulnerability with implications for respiratory health.

PMID:42716577 | DOI:10.1136/bmjresp-2026-004378