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A spatial human thymus cell atlas mapped to a continuous tissue axis

T cells develop from circulating precursors, which enter the thymus and migrate throughout specialised sub-compartments to support maturation and selection. This process starts already in early fetal development and is highly active until the involution of the thymus in adolescence. To map the micro...

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Autores principales: Yayon, Nadav, Kedlian, Veronika R., Boehme, Lena, Suo, Chenqu, Wachter, Brianna, Beuschel, Rebecca T., Amsalem, Oren, Polanski, Krzysztof, Koplev, Simon, Tuck, Elizabeth, Dann, Emma, Van Hulle, Jolien, Perera, Shani, Putteman, Tom, Predeus, Alexander V., Dabrowska, Monika, Richardson, Laura, Tudor, Catherine, Kreins, Alexandra Y., Engelbert, Justin, Stephenson, Emily, Kleshchevnikov, Vitalii, De Rita, Fabrizio, Crossland, David, Bosticardo, Marita, Pala, Francesca, Prigmore, Elena, Chipampe, Nana-Jane, Prete, Martin, Fei, Lijiang, To, Ken, Barker, Roger A., He, Xiaoling, Van Nieuwerburgh, Filip, Bayraktar, Omer, Patel, Minal, Davies, Graham E., Haniffa, Muzlifah A., Uhlmann, Virginie, Notarangelo, Luigi D., Germain, Ronald N., Radtke, Andrea J., Marioni, John C., Taghon, Tom, Teichmann, Sarah A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10659407/
https://www.ncbi.nlm.nih.gov/pubmed/37986877
http://dx.doi.org/10.1101/2023.10.25.562925
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author Yayon, Nadav
Kedlian, Veronika R.
Boehme, Lena
Suo, Chenqu
Wachter, Brianna
Beuschel, Rebecca T.
Amsalem, Oren
Polanski, Krzysztof
Koplev, Simon
Tuck, Elizabeth
Dann, Emma
Van Hulle, Jolien
Perera, Shani
Putteman, Tom
Predeus, Alexander V.
Dabrowska, Monika
Richardson, Laura
Tudor, Catherine
Kreins, Alexandra Y.
Engelbert, Justin
Stephenson, Emily
Kleshchevnikov, Vitalii
De Rita, Fabrizio
Crossland, David
Bosticardo, Marita
Pala, Francesca
Prigmore, Elena
Chipampe, Nana-Jane
Prete, Martin
Fei, Lijiang
To, Ken
Barker, Roger A.
He, Xiaoling
Van Nieuwerburgh, Filip
Bayraktar, Omer
Patel, Minal
Davies, Graham E.
Haniffa, Muzlifah A.
Uhlmann, Virginie
Notarangelo, Luigi D.
Germain, Ronald N.
Radtke, Andrea J.
Marioni, John C.
Taghon, Tom
Teichmann, Sarah A.
author_facet Yayon, Nadav
Kedlian, Veronika R.
Boehme, Lena
Suo, Chenqu
Wachter, Brianna
Beuschel, Rebecca T.
Amsalem, Oren
Polanski, Krzysztof
Koplev, Simon
Tuck, Elizabeth
Dann, Emma
Van Hulle, Jolien
Perera, Shani
Putteman, Tom
Predeus, Alexander V.
Dabrowska, Monika
Richardson, Laura
Tudor, Catherine
Kreins, Alexandra Y.
Engelbert, Justin
Stephenson, Emily
Kleshchevnikov, Vitalii
De Rita, Fabrizio
Crossland, David
Bosticardo, Marita
Pala, Francesca
Prigmore, Elena
Chipampe, Nana-Jane
Prete, Martin
Fei, Lijiang
To, Ken
Barker, Roger A.
He, Xiaoling
Van Nieuwerburgh, Filip
Bayraktar, Omer
Patel, Minal
Davies, Graham E.
Haniffa, Muzlifah A.
Uhlmann, Virginie
Notarangelo, Luigi D.
Germain, Ronald N.
Radtke, Andrea J.
Marioni, John C.
Taghon, Tom
Teichmann, Sarah A.
author_sort Yayon, Nadav
collection PubMed
description T cells develop from circulating precursors, which enter the thymus and migrate throughout specialised sub-compartments to support maturation and selection. This process starts already in early fetal development and is highly active until the involution of the thymus in adolescence. To map the micro-anatomical underpinnings of this process in pre- vs. post-natal states, we undertook a spatially resolved analysis and established a new quantitative morphological framework for the thymus, the Cortico-Medullary Axis. Using this axis in conjunction with the curation of a multimodal single-cell, spatial transcriptomics and high-resolution multiplex imaging atlas, we show that canonical thymocyte trajectories and thymic epithelial cells are highly organised and fully established by post-conception week 12, pinpoint TEC progenitor states, find that TEC subsets and peripheral tissue genes are associated with Hassall’s Corpuscles and uncover divergence in the pace and drivers of medullary entry between CD4 vs. CD8 T cell lineages. These findings are complemented with a holistic toolkit for spatial analysis and annotation, providing a basis for a detailed understanding of T lymphocyte development.
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spelling pubmed-106594072023-11-20 A spatial human thymus cell atlas mapped to a continuous tissue axis Yayon, Nadav Kedlian, Veronika R. Boehme, Lena Suo, Chenqu Wachter, Brianna Beuschel, Rebecca T. Amsalem, Oren Polanski, Krzysztof Koplev, Simon Tuck, Elizabeth Dann, Emma Van Hulle, Jolien Perera, Shani Putteman, Tom Predeus, Alexander V. Dabrowska, Monika Richardson, Laura Tudor, Catherine Kreins, Alexandra Y. Engelbert, Justin Stephenson, Emily Kleshchevnikov, Vitalii De Rita, Fabrizio Crossland, David Bosticardo, Marita Pala, Francesca Prigmore, Elena Chipampe, Nana-Jane Prete, Martin Fei, Lijiang To, Ken Barker, Roger A. He, Xiaoling Van Nieuwerburgh, Filip Bayraktar, Omer Patel, Minal Davies, Graham E. Haniffa, Muzlifah A. Uhlmann, Virginie Notarangelo, Luigi D. Germain, Ronald N. Radtke, Andrea J. Marioni, John C. Taghon, Tom Teichmann, Sarah A. bioRxiv Article T cells develop from circulating precursors, which enter the thymus and migrate throughout specialised sub-compartments to support maturation and selection. This process starts already in early fetal development and is highly active until the involution of the thymus in adolescence. To map the micro-anatomical underpinnings of this process in pre- vs. post-natal states, we undertook a spatially resolved analysis and established a new quantitative morphological framework for the thymus, the Cortico-Medullary Axis. Using this axis in conjunction with the curation of a multimodal single-cell, spatial transcriptomics and high-resolution multiplex imaging atlas, we show that canonical thymocyte trajectories and thymic epithelial cells are highly organised and fully established by post-conception week 12, pinpoint TEC progenitor states, find that TEC subsets and peripheral tissue genes are associated with Hassall’s Corpuscles and uncover divergence in the pace and drivers of medullary entry between CD4 vs. CD8 T cell lineages. These findings are complemented with a holistic toolkit for spatial analysis and annotation, providing a basis for a detailed understanding of T lymphocyte development. Cold Spring Harbor Laboratory 2023-10-27 /pmc/articles/PMC10659407/ /pubmed/37986877 http://dx.doi.org/10.1101/2023.10.25.562925 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Yayon, Nadav
Kedlian, Veronika R.
Boehme, Lena
Suo, Chenqu
Wachter, Brianna
Beuschel, Rebecca T.
Amsalem, Oren
Polanski, Krzysztof
Koplev, Simon
Tuck, Elizabeth
Dann, Emma
Van Hulle, Jolien
Perera, Shani
Putteman, Tom
Predeus, Alexander V.
Dabrowska, Monika
Richardson, Laura
Tudor, Catherine
Kreins, Alexandra Y.
Engelbert, Justin
Stephenson, Emily
Kleshchevnikov, Vitalii
De Rita, Fabrizio
Crossland, David
Bosticardo, Marita
Pala, Francesca
Prigmore, Elena
Chipampe, Nana-Jane
Prete, Martin
Fei, Lijiang
To, Ken
Barker, Roger A.
He, Xiaoling
Van Nieuwerburgh, Filip
Bayraktar, Omer
Patel, Minal
Davies, Graham E.
Haniffa, Muzlifah A.
Uhlmann, Virginie
Notarangelo, Luigi D.
Germain, Ronald N.
Radtke, Andrea J.
Marioni, John C.
Taghon, Tom
Teichmann, Sarah A.
A spatial human thymus cell atlas mapped to a continuous tissue axis
title A spatial human thymus cell atlas mapped to a continuous tissue axis
title_full A spatial human thymus cell atlas mapped to a continuous tissue axis
title_fullStr A spatial human thymus cell atlas mapped to a continuous tissue axis
title_full_unstemmed A spatial human thymus cell atlas mapped to a continuous tissue axis
title_short A spatial human thymus cell atlas mapped to a continuous tissue axis
title_sort spatial human thymus cell atlas mapped to a continuous tissue axis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10659407/
https://www.ncbi.nlm.nih.gov/pubmed/37986877
http://dx.doi.org/10.1101/2023.10.25.562925
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