Microbiota-driven interleukin-17-producing cells and eosinophils synergize to accelerate multiple myeloma progression
The mechanisms through which gut microbiota affect extramucosal tumors are poorly understood. Here the authors show that the gut microbiota promotes multiple myeloma by inducing differentiation and migration of Th17 cells in the bone marrow resulting also in increased recruitment of pro-tumorigenic...
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Nature Portfolio
2018
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oai:doaj.org-article:6dd882c727de4bf2854877a2bb52782e2021-12-02T14:40:32ZMicrobiota-driven interleukin-17-producing cells and eosinophils synergize to accelerate multiple myeloma progression10.1038/s41467-018-07305-82041-1723https://doaj.org/article/6dd882c727de4bf2854877a2bb52782e2018-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-07305-8https://doaj.org/toc/2041-1723The mechanisms through which gut microbiota affect extramucosal tumors are poorly understood. Here the authors show that the gut microbiota promotes multiple myeloma by inducing differentiation and migration of Th17 cells in the bone marrow resulting also in increased recruitment of pro-tumorigenic eosinophils.Arianna CalcinottoArianna BreviMarta ChesiRoberto FerrareseLaura Garcia PerezMatteo GrioniShaji KumarVictoria M. GarbittMeaghen E. SharikKimberly J. HendersonGiovanni TononMichio TomuraYoshihiro MiwaEnric EspluguesRichard A. FlavellSamuel HuberFilippo CanducciVincent S. RajkumarP. Leif BergsagelMatteo BelloneNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-13 (2018) |
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DOAJ |
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Science Q Arianna Calcinotto Arianna Brevi Marta Chesi Roberto Ferrarese Laura Garcia Perez Matteo Grioni Shaji Kumar Victoria M. Garbitt Meaghen E. Sharik Kimberly J. Henderson Giovanni Tonon Michio Tomura Yoshihiro Miwa Enric Esplugues Richard A. Flavell Samuel Huber Filippo Canducci Vincent S. Rajkumar P. Leif Bergsagel Matteo Bellone Microbiota-driven interleukin-17-producing cells and eosinophils synergize to accelerate multiple myeloma progression |
description |
The mechanisms through which gut microbiota affect extramucosal tumors are poorly understood. Here the authors show that the gut microbiota promotes multiple myeloma by inducing differentiation and migration of Th17 cells in the bone marrow resulting also in increased recruitment of pro-tumorigenic eosinophils. |
format |
article |
author |
Arianna Calcinotto Arianna Brevi Marta Chesi Roberto Ferrarese Laura Garcia Perez Matteo Grioni Shaji Kumar Victoria M. Garbitt Meaghen E. Sharik Kimberly J. Henderson Giovanni Tonon Michio Tomura Yoshihiro Miwa Enric Esplugues Richard A. Flavell Samuel Huber Filippo Canducci Vincent S. Rajkumar P. Leif Bergsagel Matteo Bellone |
author_facet |
Arianna Calcinotto Arianna Brevi Marta Chesi Roberto Ferrarese Laura Garcia Perez Matteo Grioni Shaji Kumar Victoria M. Garbitt Meaghen E. Sharik Kimberly J. Henderson Giovanni Tonon Michio Tomura Yoshihiro Miwa Enric Esplugues Richard A. Flavell Samuel Huber Filippo Canducci Vincent S. Rajkumar P. Leif Bergsagel Matteo Bellone |
author_sort |
Arianna Calcinotto |
title |
Microbiota-driven interleukin-17-producing cells and eosinophils synergize to accelerate multiple myeloma progression |
title_short |
Microbiota-driven interleukin-17-producing cells and eosinophils synergize to accelerate multiple myeloma progression |
title_full |
Microbiota-driven interleukin-17-producing cells and eosinophils synergize to accelerate multiple myeloma progression |
title_fullStr |
Microbiota-driven interleukin-17-producing cells and eosinophils synergize to accelerate multiple myeloma progression |
title_full_unstemmed |
Microbiota-driven interleukin-17-producing cells and eosinophils synergize to accelerate multiple myeloma progression |
title_sort |
microbiota-driven interleukin-17-producing cells and eosinophils synergize to accelerate multiple myeloma progression |
publisher |
Nature Portfolio |
publishDate |
2018 |
url |
https://doaj.org/article/6dd882c727de4bf2854877a2bb52782e |
work_keys_str_mv |
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