TY - JOUR
T1 - Increased expression of CXCL6 in secretory cells drives fibroblast collagen synthesis and is associated with increased mortality in idiopathic pulmonary fibrosis
AU - Bahudhanapati, Harinath
AU - Tan, Jiangning
AU - Apel, Rosa Marie
AU - Seeliger, Benjamin
AU - Schupp, Jonas
AU - Li, Xiaoyun
AU - Sullivan, Daniel I.
AU - Sembrat, John
AU - Rojas, Mauricio
AU - Tabib, Tracy
AU - Valenzi, Eleanor
AU - Lafyatis, Robert
AU - Mitash, Nilay
AU - Pineda, Ricardo Hernandez
AU - Jawale, Chetan
AU - Peroumal, Doureradjou
AU - Biswas, Partha
AU - Tedrow, John
AU - Adams, Taylor
AU - Wuyts, Naftali Kaminski Wim A.
AU - McDyer, John F.
AU - Gibson, Kevin F.
AU - Alder, Jonathan K.
AU - Zhang, Melanie Königshoff Yingze
AU - Nouraie, Mehdi
AU - Prasse, Antje
AU - Kass, Daniel J.
N1 - Publisher Copyright: ©The authors 2024.
PY - 2024/1/10
Y1 - 2024/1/10
N2 - Rationale Recent data suggest that the localisation of airway epithelial cells in the distal lung in idiopathic pulmonary fibrosis (IPF) may drive pathology. We set out to discover whether chemokines expressed in these ectopic airway epithelial cells may contribute to the pathogenesis of IPF. Methods We analysed whole lung and single-cell transcriptomic data obtained from patients with IPF. In addition, we measured chemokine levels in blood, bronchoalveolar lavage (BAL) of IPF patients and air–liquid interface cultures. We employed ex vivo donor and IPF lung fibroblasts and an animal model of pulmonary fibrosis to test the effects of chemokine signalling on fibroblast function. Results By analysis of whole-lung transcriptomics, protein and BAL, we discovered that CXCL6 (a member of the interleukin-8 family) was increased in patients with IPF. Elevated CXCL6 levels in the BAL of two cohorts of patients with IPF were associated with poor survival (hazard ratio of death or progression 1.89, 95% CI 1.16–3.08; n=179, p=0.01). By immunostaining and single-cell RNA sequencing, CXCL6 was detected in secretory cells. Administration of mCXCL5 (LIX, murine CXCL6 homologue) to mice increased collagen synthesis with and without bleomycin. CXCL6 increased collagen I levels in donor and IPF fibroblasts 4.4-fold and 1.7-fold, respectively. Both silencing of and chemical inhibition of CXCR1/2 blocked the effects of CXCL6 on collagen, while overexpression of CXCR2 increased collagen I levels 4.5-fold in IPF fibroblasts. Conclusions CXCL6 is expressed in ectopic airway epithelial cells. Elevated levels of CXCL6 are associated with IPF mortality. CXCL6-driven collagen synthesis represents a functional consequence of ectopic localisation of airway epithelial cells in IPF.
AB - Rationale Recent data suggest that the localisation of airway epithelial cells in the distal lung in idiopathic pulmonary fibrosis (IPF) may drive pathology. We set out to discover whether chemokines expressed in these ectopic airway epithelial cells may contribute to the pathogenesis of IPF. Methods We analysed whole lung and single-cell transcriptomic data obtained from patients with IPF. In addition, we measured chemokine levels in blood, bronchoalveolar lavage (BAL) of IPF patients and air–liquid interface cultures. We employed ex vivo donor and IPF lung fibroblasts and an animal model of pulmonary fibrosis to test the effects of chemokine signalling on fibroblast function. Results By analysis of whole-lung transcriptomics, protein and BAL, we discovered that CXCL6 (a member of the interleukin-8 family) was increased in patients with IPF. Elevated CXCL6 levels in the BAL of two cohorts of patients with IPF were associated with poor survival (hazard ratio of death or progression 1.89, 95% CI 1.16–3.08; n=179, p=0.01). By immunostaining and single-cell RNA sequencing, CXCL6 was detected in secretory cells. Administration of mCXCL5 (LIX, murine CXCL6 homologue) to mice increased collagen synthesis with and without bleomycin. CXCL6 increased collagen I levels in donor and IPF fibroblasts 4.4-fold and 1.7-fold, respectively. Both silencing of and chemical inhibition of CXCR1/2 blocked the effects of CXCL6 on collagen, while overexpression of CXCR2 increased collagen I levels 4.5-fold in IPF fibroblasts. Conclusions CXCL6 is expressed in ectopic airway epithelial cells. Elevated levels of CXCL6 are associated with IPF mortality. CXCL6-driven collagen synthesis represents a functional consequence of ectopic localisation of airway epithelial cells in IPF.
UR - https://www.scopus.com/pages/publications/85181760438
U2 - 10.1183/13993003.00088-2023
DO - 10.1183/13993003.00088-2023
M3 - Article
C2 - 37918852
SN - 0903-1936
VL - 63
JO - European Respiratory Journal
JF - European Respiratory Journal
IS - 1
M1 - 2300088
ER -