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Multilineage murine stem cells generate complex organoids to model distal lung development and disease

Organoids derived from mouse and human stem cells have recently emerged as a powerful tool to study organ development and disease. We here established a three‐dimensional (3D) murine bronchioalveolar lung organoid (BALO) model that allows clonal expansion and self‐organization of FACS‐sorted bronchi...

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Autores principales: Vazquez‐Armendariz, Ana Ivonne, Heiner, Monika, El Agha, Elie, Salwig, Isabelle, Hoek, Andreas, Hessler, Marie Christin, Shalashova, Irina, Shrestha, Amit, Carraro, Gianni, Mengel, Jan Philip, Günther, Andreas, Morty, Rory Edward, Vadász, István, Schwemmle, Martin, Kummer, Wolfgang, Hain, Torsten, Goesmann, Alexander, Bellusci, Saverio, Seeger, Werner, Braun, Thomas, Herold, Susanne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7604576/
https://www.ncbi.nlm.nih.gov/pubmed/32985719
http://dx.doi.org/10.15252/embj.2019103476
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author Vazquez‐Armendariz, Ana Ivonne
Heiner, Monika
El Agha, Elie
Salwig, Isabelle
Hoek, Andreas
Hessler, Marie Christin
Shalashova, Irina
Shrestha, Amit
Carraro, Gianni
Mengel, Jan Philip
Günther, Andreas
Morty, Rory Edward
Vadász, István
Schwemmle, Martin
Kummer, Wolfgang
Hain, Torsten
Goesmann, Alexander
Bellusci, Saverio
Seeger, Werner
Braun, Thomas
Herold, Susanne
author_facet Vazquez‐Armendariz, Ana Ivonne
Heiner, Monika
El Agha, Elie
Salwig, Isabelle
Hoek, Andreas
Hessler, Marie Christin
Shalashova, Irina
Shrestha, Amit
Carraro, Gianni
Mengel, Jan Philip
Günther, Andreas
Morty, Rory Edward
Vadász, István
Schwemmle, Martin
Kummer, Wolfgang
Hain, Torsten
Goesmann, Alexander
Bellusci, Saverio
Seeger, Werner
Braun, Thomas
Herold, Susanne
author_sort Vazquez‐Armendariz, Ana Ivonne
collection PubMed
description Organoids derived from mouse and human stem cells have recently emerged as a powerful tool to study organ development and disease. We here established a three‐dimensional (3D) murine bronchioalveolar lung organoid (BALO) model that allows clonal expansion and self‐organization of FACS‐sorted bronchioalveolar stem cells (BASCs) upon co‐culture with lung‐resident mesenchymal cells. BALOs yield a highly branched 3D structure within 21 days of culture, mimicking the cellular composition of the bronchioalveolar compartment as defined by single‐cell RNA sequencing and fluorescence as well as electron microscopic phenotyping. Additionally, BALOs support engraftment and maintenance of the cellular phenotype of injected tissue‐resident macrophages. We also demonstrate that BALOs recapitulate lung developmental defects after knockdown of a critical regulatory gene, and permit modeling of viral infection. We conclude that the BALO model enables reconstruction of the epithelial–mesenchymal‐myeloid unit of the distal lung, thereby opening numerous new avenues to study lung development, infection, and regenerative processes in vitro.
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spelling pubmed-76045762020-11-05 Multilineage murine stem cells generate complex organoids to model distal lung development and disease Vazquez‐Armendariz, Ana Ivonne Heiner, Monika El Agha, Elie Salwig, Isabelle Hoek, Andreas Hessler, Marie Christin Shalashova, Irina Shrestha, Amit Carraro, Gianni Mengel, Jan Philip Günther, Andreas Morty, Rory Edward Vadász, István Schwemmle, Martin Kummer, Wolfgang Hain, Torsten Goesmann, Alexander Bellusci, Saverio Seeger, Werner Braun, Thomas Herold, Susanne EMBO J Articles Organoids derived from mouse and human stem cells have recently emerged as a powerful tool to study organ development and disease. We here established a three‐dimensional (3D) murine bronchioalveolar lung organoid (BALO) model that allows clonal expansion and self‐organization of FACS‐sorted bronchioalveolar stem cells (BASCs) upon co‐culture with lung‐resident mesenchymal cells. BALOs yield a highly branched 3D structure within 21 days of culture, mimicking the cellular composition of the bronchioalveolar compartment as defined by single‐cell RNA sequencing and fluorescence as well as electron microscopic phenotyping. Additionally, BALOs support engraftment and maintenance of the cellular phenotype of injected tissue‐resident macrophages. We also demonstrate that BALOs recapitulate lung developmental defects after knockdown of a critical regulatory gene, and permit modeling of viral infection. We conclude that the BALO model enables reconstruction of the epithelial–mesenchymal‐myeloid unit of the distal lung, thereby opening numerous new avenues to study lung development, infection, and regenerative processes in vitro. John Wiley and Sons Inc. 2020-09-28 2020-11-02 /pmc/articles/PMC7604576/ /pubmed/32985719 http://dx.doi.org/10.15252/embj.2019103476 Text en © 2020 The Authors. Published under the terms of the CC BY 4.0 license This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Vazquez‐Armendariz, Ana Ivonne
Heiner, Monika
El Agha, Elie
Salwig, Isabelle
Hoek, Andreas
Hessler, Marie Christin
Shalashova, Irina
Shrestha, Amit
Carraro, Gianni
Mengel, Jan Philip
Günther, Andreas
Morty, Rory Edward
Vadász, István
Schwemmle, Martin
Kummer, Wolfgang
Hain, Torsten
Goesmann, Alexander
Bellusci, Saverio
Seeger, Werner
Braun, Thomas
Herold, Susanne
Multilineage murine stem cells generate complex organoids to model distal lung development and disease
title Multilineage murine stem cells generate complex organoids to model distal lung development and disease
title_full Multilineage murine stem cells generate complex organoids to model distal lung development and disease
title_fullStr Multilineage murine stem cells generate complex organoids to model distal lung development and disease
title_full_unstemmed Multilineage murine stem cells generate complex organoids to model distal lung development and disease
title_short Multilineage murine stem cells generate complex organoids to model distal lung development and disease
title_sort multilineage murine stem cells generate complex organoids to model distal lung development and disease
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7604576/
https://www.ncbi.nlm.nih.gov/pubmed/32985719
http://dx.doi.org/10.15252/embj.2019103476
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