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Integrative analysis of cell state changes in lung fibrosis with peripheral protein biomarkers

Authors :
Britta Maurer
Lukas M. Simon
Meshal Ansari
Anne Hilgendorff
Janine Schniering
Ilias Angelidis
Matthias Mann
Heiko Adler
Frank Reichenberger
Gabriela Leuschner
Michael Lindner
Pawandeep Singh
Philipp E. Geyer
Antje Prasse
Christoph H. Mayr
Maximilian Strunz
Jürgen Behr
Herbert B. Schiller
Edith Silbernagel
Fabian J. Theis
Oliver Eickelberg
Nikolaus Kneidinger
Stephan H. Bohm
University of Zurich
Theis, Fabian J
Schiller, Herbert B
Source :
Embo Molecular Medicine, Mayr, Christoph H; Simon, Lukas M; Leuschner, Gabriela; Ansari, Meshal; Schniering, Janine; Geyer, Philipp E; Angelidis, Ilias; Strunz, Maximilian; Singh, Pawandeep; Kneidinger, Nikolaus; Reichenberger, Frank; Silbernagel, Edith; Böhm, Stephan; Adler, Heiko; Lindner, Michael; Maurer, Britta; Hilgendorff, Anne; Prasse, Antje; Behr, Jürgen; Mann, Matthias; ... (2021). Integrative analysis of cell state changes in lung fibrosis with peripheral protein biomarkers. EMBO molecular medicine, 13(4), e12871. EMBO Press 10.15252/emmm.202012871 , EMBO Molecular Medicine, EMBO Molecular Medicine, Vol 13, Iss 4, Pp n/a-n/a (2021), EMBO Mol. Med. 13:e12871 (2021)
Publication Year :
2021

Abstract

The correspondence of cell state changes in diseased organs to peripheral protein signatures is currently unknown. Here, we generated and integrated single‐cell transcriptomic and proteomic data from multiple large pulmonary fibrosis patient cohorts. Integration of 233,638 single‐cell transcriptomes (n = 61) across three independent cohorts enabled us to derive shifts in cell type proportions and a robust core set of genes altered in lung fibrosis for 45 cell types. Mass spectrometry analysis of lung lavage fluid (n = 124) and plasma (n = 141) proteomes identified distinct protein signatures correlated with diagnosis, lung function, and injury status. A novel SSTR2+ pericyte state correlated with disease severity and was reflected in lavage fluid by increased levels of the complement regulatory factor CFHR1. We further discovered CRTAC1 as a biomarker of alveolar type‐2 epithelial cell health status in lavage fluid and plasma. Using cross‐modal analysis and machine learning, we identified the cellular source of biomarkers and demonstrated that information transfer between modalities correctly predicts disease status, suggesting feasibility of clinical cell state monitoring through longitudinal sampling of body fluid proteomes.<br />Multi‐modal integration of single‐cell RNA‐seq data from lung tissue and proteomic data from body fluids across independent lung fibrosis patient cohorts revealed biomarker signatures that correspond with cell state changes during disease progression.

Details

Language :
English
Database :
OpenAIRE
Journal :
Embo Molecular Medicine, Mayr, Christoph H; Simon, Lukas M; Leuschner, Gabriela; Ansari, Meshal; Schniering, Janine; Geyer, Philipp E; Angelidis, Ilias; Strunz, Maximilian; Singh, Pawandeep; Kneidinger, Nikolaus; Reichenberger, Frank; Silbernagel, Edith; B&#246;hm, Stephan; Adler, Heiko; Lindner, Michael; Maurer, Britta; Hilgendorff, Anne; Prasse, Antje; Behr, J&#252;rgen; Mann, Matthias; ... (2021). Integrative analysis of cell state changes in lung fibrosis with peripheral protein biomarkers. EMBO molecular medicine, 13(4), e12871. EMBO Press 10.15252/emmm.202012871 <http://dx.doi.org/10.15252/emmm.202012871>, EMBO Molecular Medicine, EMBO Molecular Medicine, Vol 13, Iss 4, Pp n/a-n/a (2021), EMBO Mol. Med. 13:e12871 (2021)
Accession number :
edsair.doi.dedup.....e765f3397731079b6cc2ca3219536d97