Skip to main navigation Skip to search Skip to main content

Azurocidin-1 as a mediator of bronchiectasis severity, epithelial defence, and target of dipeptidyl peptidase-1 inhibition: an international, multicohort study

  • Amelia Shoemark
  • , Emma D. Johnson
  • , Morven Shuttleworth
  • , Max Schwiening
  • , Rebecca Hull
  • , Jamie Stobo
  • , Hani Abo-Leyah
  • , Simon Finch
  • , Jennifer Pollock
  • , Jeffrey T. J. Huang
  • , Hollian Richardson
  • , Lidia Perea
  • , Eve McIntosh
  • , Erin Cant
  • , Rachel Galloway
  • , Hayoung Choi
  • , Anthony de Soyza
  • , Arietta Spinou
  • , Felix C. Ringshausen
  • , Natalie Lorent
  • Patrick Mallia, Sebastian L. Johnston, Marek Gierlinski, Pieter Goeminne, Michael R. Loebinger, Yong Hua Gao, Sanjay H. Chotirmall, Raja Dhar, Charles Haworth, Josje Altenburg, Francesco Blasi, Eva Polverino, Michal Shteinberg, Sam Strickson, David Cipolla, Ariel Teper, Carlos Fernandez, Vivian H. Shih, Kevin Mange, Aran Singanayagam, Stefano Aliberti, Oriol Sibila, Merete B. Long, James D. Chalmers*
*Corresponding author for this work
  • University of Dundee
  • AstraZeneca
  • August Pi i Sunyer Biomedical Research Institute
  • Hallym University
  • Newcastle University
  • King's College London
  • Hannover Medical School
  • German Center for Lung Research
  • KU Leuven
  • Imperial College London
  • AZ Nikolaas
  • Royal Brompton and Harefield NHS Foundation Trust
  • First Affiliated Hospital of Zhengzhou University
  • Lee Kong Chian School of Medicine
  • Tan Tock Seng Hospital
  • CK Birla Group of Hospitals
  • University of Cambridge
  • North West Hospital Group
  • University of Milan
  • IRCCS Fondazione Ca'Granda – Ospedale Maggiore Policlinico - Milano
  • Hospital Vall d’Hebron
  • Carmel Medical Center
  • Technion-Israel Institute of Technology
  • Insmed Incorporated
  • IRCCS Istituto Clinico Humanitas - Rozzano (Milano)
  • Humanitas University
  • University of Barcelona

Research output: Contribution to journalArticleAcademicpeer-review

10 Downloads (Pure)

Abstract

Background: Dipeptidyl peptidase-1 (DPP1) inhibitors prevent the activation of neutrophil serine proteases and reduce exacerbations in people with bronchiectasis. We previously identified a novel effect of DPP1 inhibitors in reducing the neutrophil pseudoenzyme azurocidin-1 (AZU1). The aim of this study was to investigate the role of AZU1 in the pathophysiology of bronchiectasis. Methods: Sputum AZU1 concentrations were analysed in multiple cohorts. These consisted of two observational cohorts of patients with bronchiectasis (EMBARC BRIDGE cohort 1 and cohort 2) and a cohort of patients with chronic obstructive pulmonary disease (COPD; TARDIS COPD cohort) to correlate AZU1 with disease severity and exacerbations. A rhinovirus challenge study was used to investigate AZU1 concentrations during experimental exacerbation in COPD, people who smoke, and controls. A post-hoc analysis of the phase 2 WILLOW trial of brensocatib versus placebo was used to assess the effect of DPP1 inhibition on airway AZU1. Findings: Higher AZU1 sputum concentration was associated with increased bronchiectasis disease severity index (p<0·0001), decreased percentage predicted forced expiratory volume in 1 second (r=–0·4662, p<0·001), and increased exacerbation frequency (p<0·0019; EMBARC cohort 1, n=197). AZU1 was associated with radiological severity (Reiff score), symptoms (quality of life bronchiectasis respiratory symptom score), and bacterial infection (sputum microbiology and 16S microbiome alpha diversity; highest levels of AZU1 were found in airway samples with Pseudomonas aeruginosa; p<0·0001; EMBARC cohort 2, n=144). Bronchiectasis patients with bacterial and viral exacerbations had increased concentrations of AZU1 (p=0·0003; n=96). These findings were extended to COPD, in which AZU1 was related to COPD severity (COPD cohort, n=101), and in patients with COPD challenged with rhinovirus A16, AZU1 was increased at day 9 post-challenge (p<0·001; n=9). In-vitro AZU1 impaired ciliary function and epithelial integrity, suggesting a mechanism by which AZU1 drives disease pathogenesis. In a post-hoc analysis of the WILLOW trial, AZU1 was the most downregulated protein with brensocatib treatment (brensocatib 10 mg, n=71; brensocatib 25 mg, n=73; and placebo, n=71). Over 24 weeks, AZU1 was significantly reduced by DPP1 inhibition (p<0·0001). Interpretation: AZU1 was identified as a novel marker of disease severity in bronchiectasis, associated with bacterial infection and exacerbation, and targeted by DPP1 inhibition. Funding: EMBARC3 and Insmed.

Original languageEnglish
Pages (from-to)493-504
Number of pages12
JournalThe Lancet Respiratory Medicine
Volume14
Issue number6
Early online date2026
DOIs
Publication statusPublished - Jun 2026

Fingerprint

Dive into the research topics of 'Azurocidin-1 as a mediator of bronchiectasis severity, epithelial defence, and target of dipeptidyl peptidase-1 inhibition: an international, multicohort study'. Together they form a unique fingerprint.

Cite this