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author Madissoon, Elo
Oliver, Amanda J.
Kleshchevnikov, Vitalii
Wilbrey-Clark, Anna
Polanski, Krzysztof
Richoz, Nathan
Ribeiro Orsi, Ana
Mamanova, Lira
Bolt, Liam
Elmentaite, Rasa
Pett, J. Patrick
Huang, Ni
Xu, Chuan
He, Peng
Dabrowska, Monika
Pritchard, Sophie
Tuck, Liz
Prigmore, Elena
Perera, Shani
Knights, Andrew
Oszlanczi, Agnes
Hunter, Adam
Vieira, Sara F.
Patel, Minal
Lindeboom, Rik G. H.
Campos, Lia S.
Matsuo, Kazuhiko
Nakayama, Takashi
Yoshida, Masahiro
Worlock, Kaylee B.
Nikolić, Marko Z.
Georgakopoulos, Nikitas
Mahbubani, Krishnaa T.
Saeb-Parsy, Kourosh
Bayraktar, Omer Ali
Clatworthy, Menna R.
Stegle, Oliver
Kumasaka, Natsuhiko
Teichmann, Sarah A.
Meyer, Kerstin B.
author_facet Madissoon, Elo
Oliver, Amanda J.
Kleshchevnikov, Vitalii
Wilbrey-Clark, Anna
Polanski, Krzysztof
Richoz, Nathan
Ribeiro Orsi, Ana
Mamanova, Lira
Bolt, Liam
Elmentaite, Rasa
Pett, J. Patrick
Huang, Ni
Xu, Chuan
He, Peng
Dabrowska, Monika
Pritchard, Sophie
Tuck, Liz
Prigmore, Elena
Perera, Shani
Knights, Andrew
Oszlanczi, Agnes
Hunter, Adam
Vieira, Sara F.
Patel, Minal
Lindeboom, Rik G. H.
Campos, Lia S.
Matsuo, Kazuhiko
Nakayama, Takashi
Yoshida, Masahiro
Worlock, Kaylee B.
Nikolić, Marko Z.
Georgakopoulos, Nikitas
Mahbubani, Krishnaa T.
Saeb-Parsy, Kourosh
Bayraktar, Omer Ali
Clatworthy, Menna R.
Stegle, Oliver
Kumasaka, Natsuhiko
Teichmann, Sarah A.
Meyer, Kerstin B.
author_sort Madissoon, Elo
collection PubMed
description Single-cell transcriptomics has allowed unprecedented resolution of cell types/states in the human lung, but their spatial context is less well defined. To (re)define tissue architecture of lung and airways, we profiled five proximal-to-distal locations of healthy human lungs in depth using multi-omic single cell/nuclei and spatial transcriptomics (queryable at lungcellatlas.org). Using computational data integration and analysis, we extend beyond the suspension cell paradigm and discover macro and micro-anatomical tissue compartments including previously unannotated cell types in the epithelial, vascular, stromal and nerve bundle micro-environments. We identify and implicate peribronchial fibroblasts in lung disease. Importantly, we discover and validate a survival niche for IgA plasma cells in the airway submucosal glands (SMG). We show that gland epithelial cells recruit B cells and IgA plasma cells, and promote longevity and antibody secretion locally through expression of CCL28, APRIL and IL-6. This new ‘gland-associated immune niche’ has implications for respiratory health.
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spelling pubmed-98394522023-01-15 A spatially resolved atlas of the human lung characterizes a gland-associated immune niche Madissoon, Elo Oliver, Amanda J. Kleshchevnikov, Vitalii Wilbrey-Clark, Anna Polanski, Krzysztof Richoz, Nathan Ribeiro Orsi, Ana Mamanova, Lira Bolt, Liam Elmentaite, Rasa Pett, J. Patrick Huang, Ni Xu, Chuan He, Peng Dabrowska, Monika Pritchard, Sophie Tuck, Liz Prigmore, Elena Perera, Shani Knights, Andrew Oszlanczi, Agnes Hunter, Adam Vieira, Sara F. Patel, Minal Lindeboom, Rik G. H. Campos, Lia S. Matsuo, Kazuhiko Nakayama, Takashi Yoshida, Masahiro Worlock, Kaylee B. Nikolić, Marko Z. Georgakopoulos, Nikitas Mahbubani, Krishnaa T. Saeb-Parsy, Kourosh Bayraktar, Omer Ali Clatworthy, Menna R. Stegle, Oliver Kumasaka, Natsuhiko Teichmann, Sarah A. Meyer, Kerstin B. Nat Genet Article Single-cell transcriptomics has allowed unprecedented resolution of cell types/states in the human lung, but their spatial context is less well defined. To (re)define tissue architecture of lung and airways, we profiled five proximal-to-distal locations of healthy human lungs in depth using multi-omic single cell/nuclei and spatial transcriptomics (queryable at lungcellatlas.org). Using computational data integration and analysis, we extend beyond the suspension cell paradigm and discover macro and micro-anatomical tissue compartments including previously unannotated cell types in the epithelial, vascular, stromal and nerve bundle micro-environments. We identify and implicate peribronchial fibroblasts in lung disease. Importantly, we discover and validate a survival niche for IgA plasma cells in the airway submucosal glands (SMG). We show that gland epithelial cells recruit B cells and IgA plasma cells, and promote longevity and antibody secretion locally through expression of CCL28, APRIL and IL-6. This new ‘gland-associated immune niche’ has implications for respiratory health. Nature Publishing Group US 2022-12-21 2023 /pmc/articles/PMC9839452/ /pubmed/36543915 http://dx.doi.org/10.1038/s41588-022-01243-4 Text en © The Author(s) 2022 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 Article
Madissoon, Elo
Oliver, Amanda J.
Kleshchevnikov, Vitalii
Wilbrey-Clark, Anna
Polanski, Krzysztof
Richoz, Nathan
Ribeiro Orsi, Ana
Mamanova, Lira
Bolt, Liam
Elmentaite, Rasa
Pett, J. Patrick
Huang, Ni
Xu, Chuan
He, Peng
Dabrowska, Monika
Pritchard, Sophie
Tuck, Liz
Prigmore, Elena
Perera, Shani
Knights, Andrew
Oszlanczi, Agnes
Hunter, Adam
Vieira, Sara F.
Patel, Minal
Lindeboom, Rik G. H.
Campos, Lia S.
Matsuo, Kazuhiko
Nakayama, Takashi
Yoshida, Masahiro
Worlock, Kaylee B.
Nikolić, Marko Z.
Georgakopoulos, Nikitas
Mahbubani, Krishnaa T.
Saeb-Parsy, Kourosh
Bayraktar, Omer Ali
Clatworthy, Menna R.
Stegle, Oliver
Kumasaka, Natsuhiko
Teichmann, Sarah A.
Meyer, Kerstin B.
A spatially resolved atlas of the human lung characterizes a gland-associated immune niche
title A spatially resolved atlas of the human lung characterizes a gland-associated immune niche
title_full A spatially resolved atlas of the human lung characterizes a gland-associated immune niche
title_fullStr A spatially resolved atlas of the human lung characterizes a gland-associated immune niche
title_full_unstemmed A spatially resolved atlas of the human lung characterizes a gland-associated immune niche
title_short A spatially resolved atlas of the human lung characterizes a gland-associated immune niche
title_sort spatially resolved atlas of the human lung characterizes a gland-associated immune niche
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9839452/
https://www.ncbi.nlm.nih.gov/pubmed/36543915
http://dx.doi.org/10.1038/s41588-022-01243-4
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