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Updated: Jan 17, 2026

A Mouse Model to Investigate the Role of Cancer-Associated Fibroblasts in Tumor Growth
Published on: December 22, 2020
Global matrisome changes in obese lung are linked to fibroblastic stroma and premature aging
Sophia Rottmann1, Jian Li1, Jelena Zurkovic2
1Institute of Molecular Medicine and Experimental Immunology, University Hospital Bonn of the Rheinische Friedrich-Wilhelms-University, Bonn 53127, Germany.
Abstract:
Obesity is linked to an increased risk of various lung disorders, yet its role in disease progression remains poorly understood. We have utilized multiomics approaches together with functional assays to explore the effect of obesity on the lung. Obesity induced matrisome remodeling and structural alterations in the elastic fiber network, exhibiting solubility shifts that overlapped with those seen in the aging lung. In addition, protease inhibitor levels were reduced in lung tissue and bronchoalveolar lavage fluid, suggesting a more damage-prone environment. At the cellular level, fibroblastic stromal cells (FSCs) selectively accumulated lipids, adopted myofibroblast-like phenotypes, and exhibited transcriptional hallmarks of premature aging. Functional assays confirmed that lipid-enriched fibroblasts displayed enhanced contractility, implicating them in the altered mechanical compliance of the obese lung. Overall, obesity led to complex alterations in the lung that ultimately affect FSCs and suggest that overnutrition may act as a contributor to premature aging, thereby compromising lung heath.
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