Neutrophil-related gene expression profile is associated with future paediatric bronchiectasis exacerbations

Hannah E O'Farrell1,2, Vikas Goyal3,4,5,6, Anne B Chang3,4,5

  • 1NHMRC Centre for Research Excellence in Paediatric Bronchiectasis (AusBREATHE), Child and Maternal Health Division, Menzies School of Health Research, Charles Darwin University, Darwin, NT, 0810, Australia. hannah.ofarrell@menzies.edu.au.

Journal of Molecular Medicine (Berlin, Germany)
|March 31, 2026
PubMed

Insights

Gene expression signatures in peripheral blood may identify children with bronchiectasis at risk of future exacerbations. Six neutrophil-associated genes showed potential as biomarkers for predicting these events.

Area of Science:

  • Pulmonary Medicine
  • Genetics
  • Biomarker Discovery

Background:

  • Acute respiratory exacerbations significantly impact quality of life and lung function in pediatric bronchiectasis.
  • Current methods to identify children at high risk of exacerbations are lacking.
  • Peripheral blood gene expression (GE) signatures are being explored as potential predictive tools.

Purpose of the Study:

  • To determine if peripheral blood GE signatures can identify children with bronchiectasis at risk of impending exacerbations.
  • To identify specific genes and pathways associated with future exacerbation events.

Main Methods:

  • RNA was extracted from peripheral blood of 31 children with bronchiectasis during stable periods.
  • Microarray assays identified differentially expressed genes (DEGs) between stable and exacerbation groups.
  • Real-time quantitative PCR (rt-qPCR) validated top DEG targets, with receiver operating characteristic (ROC) analysis assessing predictive value.

Main Results:

  • 647 entities were significantly dysregulated in children who experienced exacerbations.
  • Neutrophil degranulation was identified as a dominant, inhibited pathway.
  • Forty entities, including six genes (ANXA3, ALAS2, DEFA1, ALPL, SNCA, PROK2), were associated with future exacerbations, with DEFA1 and ANXA3 showing high predictive AUC.

Conclusions:

  • Neutrophil-associated gene expression signatures in peripheral blood may serve as potential biomarkers for identifying children with bronchiectasis at increased risk of exacerbations.
  • These findings require validation in larger, independent cohorts.
  • GE signatures offer a promising avenue for proactive management of pediatric bronchiectasis.

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