Type VI collagen is proportionally lower around airways and blood vessels in idiopathic pulmonary fibrosis

Type VI collagen (COL6) is a key extracellular matrix protein that supports matrix organization and cell-matrix interactions, yet its regulation in idiopathic pulmonary fibrosis (IPF) remains poorly understood. Here, we characterize COL6 gene expression, spatial localization, remodeling, and functional effects of COL6-derived fragments. Analysis of publicly available single-cell RNA sequencing data from 30 controls and 32 pulmonary fibrosis patients revealed higher expression of COL6A1–A6 in fibrotic lungs, predominantly in mesenchymal cells ( A1: p=0.0002, A2: p=0.0005, A3: p=2.5x10 -5 , A5: p=0.016, A6: p=0.007). Immunohistochemical analysis of lung tissue from never-smoker (n=9), ex-smoker (n=9) controls, and IPF patients (n=12) showed extensive COL6 localization across parenchyma, airways, and vessels. The proportion of COL6α1 and COL6α2 was lower around IPF vessels (α1: p<0.001, α2: p=0.012), and COL6α2 was lower around IPF airways (p=0.033) compared with never-smokers. Quantification of COL6 remodeling fragments in lung tissue from never-smoker (n=3), ex-smoker (n=5) controls, and IPF patients (n=10) revealed that COL6 production (PRO-C6) localized around airways and vessels but was proportionally lower in IPF airways (never-smokers: p=0.0075). In contrast, COL6 degradation (C6M) was widely distributed throughout the tissue, with lower levels in IPF (never-smokers: p=0.0008). Functionally, COL6 and PRO-C6 increased fibroblast viability (COL6: p=0.002, PRO-C6: p=0.0021), while apoptosis was unaffected. Similar trends were observed in epithelial and endothelial cells. In summary, despite increased COL6 gene expression, IPF lungs exhibited lower proportions of COL6 protein and synthesis around airways and vessels, suggesting disrupted matrix organization, altered remodeling, and pro-survival effects that may contribute to fibroblast persistence and fibrosis progression.

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Journal
American Journal of Physiology-Cell Physiology
Published
2026-09-15
DOI
https://doi.org/10.1152/ajpcell.00034.2026
Primary Topic
Interstitial Lung Diseases and Idiopathic Pulmonary Fibrosis
Type
article
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article

Type VI collagen is proportionally lower around airways and blood vessels in idiopathic pulmonary fibrosis

Helene W. Breisnes, Tessa Kole, Simon Francis Thomsen, Mehmet Nizamoglu et al.
American Journal of Physiology-Cell Physiology
Interstitial Lung Diseases and Idiopathic Pulmonary Fibrosis
article

Type VI collagen is proportionally lower around airways and blood vessels in idiopathic pulmonary fibrosis

Helene W. Breisnes, Tessa Kole, Simon Francis Thomsen, Mehmet Nizamoglu, Filipa B. Simões, Marnix R. Jonker, Theo Borghuis, Janette K. Burgess, Jannie Marie Bülow Sand, Corry‐Anke Brandsma, Rhode A. Meuleman, Maunick Lefin Koloko Ngassie, Morten Karsdal, Diana Julie Leeming
article en

Abstract

Type VI collagen (COL6) is a key extracellular matrix protein that supports matrix organization and cell-matrix interactions, yet its regulation in idiopathic pulmonary fibrosis (IPF) remains poorly understood. Here, we characterize COL6 gene expression, spatial localization, remodeling, and functional effects of COL6-derived fragments. Analysis of publicly available single-cell RNA sequencing data from 30 controls and 32 pulmonary fibrosis patients revealed higher expression of COL6A1–A6 in fibrotic lungs, predominantly in mesenchymal cells ( A1: p=0.0002, A2: p=0.0005, A3: p=2.5x10 -5 , A5: p=0.016, A6: p=0.007). Immunohistochemical analysis of lung tissue from never-smoker (n=9), ex-smoker (n=9) controls, and IPF patients (n=12) showed extensive COL6 localization across parenchyma, airways, and vessels. The proportion of COL6α1 and COL6α2 was lower around IPF vessels (α1: p<0.001, α2: p=0.012), and COL6α2 was lower around IPF airways (p=0.033) compared with never-smokers. Quantification of COL6 remodeling fragments in lung tissue from never-smoker (n=3), ex-smoker (n=5) controls, and IPF patients (n=10) revealed that COL6 production (PRO-C6) localized around airways and vessels but was proportionally lower in IPF airways (never-smokers: p=0.0075). In contrast, COL6 degradation (C6M) was widely distributed throughout the tissue, with lower levels in IPF (never-smokers: p=0.0008). Functionally, COL6 and PRO-C6 increased fibroblast viability (COL6: p=0.002, PRO-C6: p=0.0021), while apoptosis was unaffected. Similar trends were observed in epithelial and endothelial cells. In summary, despite increased COL6 gene expression, IPF lungs exhibited lower proportions of COL6 protein and synthesis around airways and vessels, suggesting disrupted matrix organization, altered remodeling, and pro-survival effects that may contribute to fibroblast persistence and fibrosis progression.

American Journal of Physiology-Cell Physiology
University of Copenhagen (DK), University Medical Center Groningen (NL), Bispebjerg Hospital (DK), Pulmonary Associates (US)
Noordelijke Cara Stichting
Good health and well-being
Openalex Percentile: Top 12%
Interstitial Lung Diseases and Idiopathic Pulmonary Fibrosis
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