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An integrated cell atlas of the lung in health and disease
Single-cell technologies have transformed our understanding of human tissues. Yet, studies typically capture only a limited number of donors and disagree on cell type definitions. Integrating many single-cell datasets can address these limitations of individual studies and capture the variability pr...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Nature Publishing Group US
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10287567/ https://www.ncbi.nlm.nih.gov/pubmed/37291214 http://dx.doi.org/10.1038/s41591-023-02327-2 |
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author | Sikkema, Lisa Ramírez-Suástegui, Ciro Strobl, Daniel C. Gillett, Tessa E. Zappia, Luke Madissoon, Elo Markov, Nikolay S. Zaragosi, Laure-Emmanuelle Ji, Yuge Ansari, Meshal Arguel, Marie-Jeanne Apperloo, Leonie Banchero, Martin Bécavin, Christophe Berg, Marijn Chichelnitskiy, Evgeny Chung, Mei-i Collin, Antoine Gay, Aurore C. A. Gote-Schniering, Janine Hooshiar Kashani, Baharak Inecik, Kemal Jain, Manu Kapellos, Theodore S. Kole, Tessa M. Leroy, Sylvie Mayr, Christoph H. Oliver, Amanda J. von Papen, Michael Peter, Lance Taylor, Chase J. Walzthoeni, Thomas Xu, Chuan Bui, Linh T. De Donno, Carlo Dony, Leander Faiz, Alen Guo, Minzhe Gutierrez, Austin J. Heumos, Lukas Huang, Ni Ibarra, Ignacio L. Jackson, Nathan D. Kadur Lakshminarasimha Murthy, Preetish Lotfollahi, Mohammad Tabib, Tracy Talavera-López, Carlos Travaglini, Kyle J. Wilbrey-Clark, Anna Worlock, Kaylee B. Yoshida, Masahiro van den Berge, Maarten Bossé, Yohan Desai, Tushar J. Eickelberg, Oliver Kaminski, Naftali Krasnow, Mark A. Lafyatis, Robert Nikolic, Marko Z. Powell, Joseph E. Rajagopal, Jayaraj Rojas, Mauricio Rozenblatt-Rosen, Orit Seibold, Max A. Sheppard, Dean Shepherd, Douglas P. Sin, Don D. Timens, Wim Tsankov, Alexander M. Whitsett, Jeffrey Xu, Yan Banovich, Nicholas E. Barbry, Pascal Duong, Thu Elizabeth Falk, Christine S. Meyer, Kerstin B. Kropski, Jonathan A. Pe’er, Dana Schiller, Herbert B. Tata, Purushothama Rao Schultze, Joachim L. Teichmann, Sara A. Misharin, Alexander V. Nawijn, Martijn C. Luecken, Malte D. Theis, Fabian J. |
author_facet | Sikkema, Lisa Ramírez-Suástegui, Ciro Strobl, Daniel C. Gillett, Tessa E. Zappia, Luke Madissoon, Elo Markov, Nikolay S. Zaragosi, Laure-Emmanuelle Ji, Yuge Ansari, Meshal Arguel, Marie-Jeanne Apperloo, Leonie Banchero, Martin Bécavin, Christophe Berg, Marijn Chichelnitskiy, Evgeny Chung, Mei-i Collin, Antoine Gay, Aurore C. A. Gote-Schniering, Janine Hooshiar Kashani, Baharak Inecik, Kemal Jain, Manu Kapellos, Theodore S. Kole, Tessa M. Leroy, Sylvie Mayr, Christoph H. Oliver, Amanda J. von Papen, Michael Peter, Lance Taylor, Chase J. Walzthoeni, Thomas Xu, Chuan Bui, Linh T. De Donno, Carlo Dony, Leander Faiz, Alen Guo, Minzhe Gutierrez, Austin J. Heumos, Lukas Huang, Ni Ibarra, Ignacio L. Jackson, Nathan D. Kadur Lakshminarasimha Murthy, Preetish Lotfollahi, Mohammad Tabib, Tracy Talavera-López, Carlos Travaglini, Kyle J. Wilbrey-Clark, Anna Worlock, Kaylee B. Yoshida, Masahiro van den Berge, Maarten Bossé, Yohan Desai, Tushar J. Eickelberg, Oliver Kaminski, Naftali Krasnow, Mark A. Lafyatis, Robert Nikolic, Marko Z. Powell, Joseph E. Rajagopal, Jayaraj Rojas, Mauricio Rozenblatt-Rosen, Orit Seibold, Max A. Sheppard, Dean Shepherd, Douglas P. Sin, Don D. Timens, Wim Tsankov, Alexander M. Whitsett, Jeffrey Xu, Yan Banovich, Nicholas E. Barbry, Pascal Duong, Thu Elizabeth Falk, Christine S. Meyer, Kerstin B. Kropski, Jonathan A. Pe’er, Dana Schiller, Herbert B. Tata, Purushothama Rao Schultze, Joachim L. Teichmann, Sara A. Misharin, Alexander V. Nawijn, Martijn C. Luecken, Malte D. Theis, Fabian J. |
author_sort | Sikkema, Lisa |
collection | PubMed |
description | Single-cell technologies have transformed our understanding of human tissues. Yet, studies typically capture only a limited number of donors and disagree on cell type definitions. Integrating many single-cell datasets can address these limitations of individual studies and capture the variability present in the population. Here we present the integrated Human Lung Cell Atlas (HLCA), combining 49 datasets of the human respiratory system into a single atlas spanning over 2.4 million cells from 486 individuals. The HLCA presents a consensus cell type re-annotation with matching marker genes, including annotations of rare and previously undescribed cell types. Leveraging the number and diversity of individuals in the HLCA, we identify gene modules that are associated with demographic covariates such as age, sex and body mass index, as well as gene modules changing expression along the proximal-to-distal axis of the bronchial tree. Mapping new data to the HLCA enables rapid data annotation and interpretation. Using the HLCA as a reference for the study of disease, we identify shared cell states across multiple lung diseases, including SPP1(+) profibrotic monocyte-derived macrophages in COVID-19, pulmonary fibrosis and lung carcinoma. Overall, the HLCA serves as an example for the development and use of large-scale, cross-dataset organ atlases within the Human Cell Atlas. |
format | Online Article Text |
id | pubmed-10287567 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Nature Publishing Group US |
record_format | MEDLINE/PubMed |
spelling | pubmed-102875672023-06-24 An integrated cell atlas of the lung in health and disease Sikkema, Lisa Ramírez-Suástegui, Ciro Strobl, Daniel C. Gillett, Tessa E. Zappia, Luke Madissoon, Elo Markov, Nikolay S. Zaragosi, Laure-Emmanuelle Ji, Yuge Ansari, Meshal Arguel, Marie-Jeanne Apperloo, Leonie Banchero, Martin Bécavin, Christophe Berg, Marijn Chichelnitskiy, Evgeny Chung, Mei-i Collin, Antoine Gay, Aurore C. A. Gote-Schniering, Janine Hooshiar Kashani, Baharak Inecik, Kemal Jain, Manu Kapellos, Theodore S. Kole, Tessa M. Leroy, Sylvie Mayr, Christoph H. Oliver, Amanda J. von Papen, Michael Peter, Lance Taylor, Chase J. Walzthoeni, Thomas Xu, Chuan Bui, Linh T. De Donno, Carlo Dony, Leander Faiz, Alen Guo, Minzhe Gutierrez, Austin J. Heumos, Lukas Huang, Ni Ibarra, Ignacio L. Jackson, Nathan D. Kadur Lakshminarasimha Murthy, Preetish Lotfollahi, Mohammad Tabib, Tracy Talavera-López, Carlos Travaglini, Kyle J. Wilbrey-Clark, Anna Worlock, Kaylee B. Yoshida, Masahiro van den Berge, Maarten Bossé, Yohan Desai, Tushar J. Eickelberg, Oliver Kaminski, Naftali Krasnow, Mark A. Lafyatis, Robert Nikolic, Marko Z. Powell, Joseph E. Rajagopal, Jayaraj Rojas, Mauricio Rozenblatt-Rosen, Orit Seibold, Max A. Sheppard, Dean Shepherd, Douglas P. Sin, Don D. Timens, Wim Tsankov, Alexander M. Whitsett, Jeffrey Xu, Yan Banovich, Nicholas E. Barbry, Pascal Duong, Thu Elizabeth Falk, Christine S. Meyer, Kerstin B. Kropski, Jonathan A. Pe’er, Dana Schiller, Herbert B. Tata, Purushothama Rao Schultze, Joachim L. Teichmann, Sara A. Misharin, Alexander V. Nawijn, Martijn C. Luecken, Malte D. Theis, Fabian J. Nat Med Resource Single-cell technologies have transformed our understanding of human tissues. Yet, studies typically capture only a limited number of donors and disagree on cell type definitions. Integrating many single-cell datasets can address these limitations of individual studies and capture the variability present in the population. Here we present the integrated Human Lung Cell Atlas (HLCA), combining 49 datasets of the human respiratory system into a single atlas spanning over 2.4 million cells from 486 individuals. The HLCA presents a consensus cell type re-annotation with matching marker genes, including annotations of rare and previously undescribed cell types. Leveraging the number and diversity of individuals in the HLCA, we identify gene modules that are associated with demographic covariates such as age, sex and body mass index, as well as gene modules changing expression along the proximal-to-distal axis of the bronchial tree. Mapping new data to the HLCA enables rapid data annotation and interpretation. Using the HLCA as a reference for the study of disease, we identify shared cell states across multiple lung diseases, including SPP1(+) profibrotic monocyte-derived macrophages in COVID-19, pulmonary fibrosis and lung carcinoma. Overall, the HLCA serves as an example for the development and use of large-scale, cross-dataset organ atlases within the Human Cell Atlas. Nature Publishing Group US 2023-06-08 2023 /pmc/articles/PMC10287567/ /pubmed/37291214 http://dx.doi.org/10.1038/s41591-023-02327-2 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) . |
spellingShingle | Resource Sikkema, Lisa Ramírez-Suástegui, Ciro Strobl, Daniel C. Gillett, Tessa E. Zappia, Luke Madissoon, Elo Markov, Nikolay S. Zaragosi, Laure-Emmanuelle Ji, Yuge Ansari, Meshal Arguel, Marie-Jeanne Apperloo, Leonie Banchero, Martin Bécavin, Christophe Berg, Marijn Chichelnitskiy, Evgeny Chung, Mei-i Collin, Antoine Gay, Aurore C. A. Gote-Schniering, Janine Hooshiar Kashani, Baharak Inecik, Kemal Jain, Manu Kapellos, Theodore S. Kole, Tessa M. Leroy, Sylvie Mayr, Christoph H. Oliver, Amanda J. von Papen, Michael Peter, Lance Taylor, Chase J. Walzthoeni, Thomas Xu, Chuan Bui, Linh T. De Donno, Carlo Dony, Leander Faiz, Alen Guo, Minzhe Gutierrez, Austin J. Heumos, Lukas Huang, Ni Ibarra, Ignacio L. Jackson, Nathan D. Kadur Lakshminarasimha Murthy, Preetish Lotfollahi, Mohammad Tabib, Tracy Talavera-López, Carlos Travaglini, Kyle J. Wilbrey-Clark, Anna Worlock, Kaylee B. Yoshida, Masahiro van den Berge, Maarten Bossé, Yohan Desai, Tushar J. Eickelberg, Oliver Kaminski, Naftali Krasnow, Mark A. Lafyatis, Robert Nikolic, Marko Z. Powell, Joseph E. Rajagopal, Jayaraj Rojas, Mauricio Rozenblatt-Rosen, Orit Seibold, Max A. Sheppard, Dean Shepherd, Douglas P. Sin, Don D. Timens, Wim Tsankov, Alexander M. Whitsett, Jeffrey Xu, Yan Banovich, Nicholas E. Barbry, Pascal Duong, Thu Elizabeth Falk, Christine S. Meyer, Kerstin B. Kropski, Jonathan A. Pe’er, Dana Schiller, Herbert B. Tata, Purushothama Rao Schultze, Joachim L. Teichmann, Sara A. Misharin, Alexander V. Nawijn, Martijn C. Luecken, Malte D. Theis, Fabian J. An integrated cell atlas of the lung in health and disease |
title | An integrated cell atlas of the lung in health and disease |
title_full | An integrated cell atlas of the lung in health and disease |
title_fullStr | An integrated cell atlas of the lung in health and disease |
title_full_unstemmed | An integrated cell atlas of the lung in health and disease |
title_short | An integrated cell atlas of the lung in health and disease |
title_sort | integrated cell atlas of the lung in health and disease |
topic | Resource |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10287567/ https://www.ncbi.nlm.nih.gov/pubmed/37291214 http://dx.doi.org/10.1038/s41591-023-02327-2 |
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