Programmed cell removal by calreticulin in tissue homeostasis and cancer

Macrophage-mediated programmed cell removal (PrCR) allows clearance of living cells. Here the authors show that, in mouse models, activated macrophages create an “eat me” signal via calreticulin secretion on neutrophils during peritonitis and on cancer cells, determining in both cases clearance by P...

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Autores principales: Mingye Feng, Kristopher D. Marjon, Fangfang Zhu, Rachel Weissman-Tsukamoto, Aaron Levett, Katie Sullivan, Kevin S. Kao, Maxim Markovic, Paul A. Bump, Hannah M. Jackson, Timothy S. Choi, Jing Chen, Allison M. Banuelos, Jie Liu, Phung Gip, Lei Cheng, Denong Wang, Irving L. Weissman
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/a1b68cf0ddc143208c23a7ee9e16b82a
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spelling oai:doaj.org-article:a1b68cf0ddc143208c23a7ee9e16b82a2021-12-02T17:32:00ZProgrammed cell removal by calreticulin in tissue homeostasis and cancer10.1038/s41467-018-05211-72041-1723https://doaj.org/article/a1b68cf0ddc143208c23a7ee9e16b82a2018-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-05211-7https://doaj.org/toc/2041-1723Macrophage-mediated programmed cell removal (PrCR) allows clearance of living cells. Here the authors show that, in mouse models, activated macrophages create an “eat me” signal via calreticulin secretion on neutrophils during peritonitis and on cancer cells, determining in both cases clearance by PrCR.Mingye FengKristopher D. MarjonFangfang ZhuRachel Weissman-TsukamotoAaron LevettKatie SullivanKevin S. KaoMaxim MarkovicPaul A. BumpHannah M. JacksonTimothy S. ChoiJing ChenAllison M. BanuelosJie LiuPhung GipLei ChengDenong WangIrving L. WeissmanNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-15 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Mingye Feng
Kristopher D. Marjon
Fangfang Zhu
Rachel Weissman-Tsukamoto
Aaron Levett
Katie Sullivan
Kevin S. Kao
Maxim Markovic
Paul A. Bump
Hannah M. Jackson
Timothy S. Choi
Jing Chen
Allison M. Banuelos
Jie Liu
Phung Gip
Lei Cheng
Denong Wang
Irving L. Weissman
Programmed cell removal by calreticulin in tissue homeostasis and cancer
description Macrophage-mediated programmed cell removal (PrCR) allows clearance of living cells. Here the authors show that, in mouse models, activated macrophages create an “eat me” signal via calreticulin secretion on neutrophils during peritonitis and on cancer cells, determining in both cases clearance by PrCR.
format article
author Mingye Feng
Kristopher D. Marjon
Fangfang Zhu
Rachel Weissman-Tsukamoto
Aaron Levett
Katie Sullivan
Kevin S. Kao
Maxim Markovic
Paul A. Bump
Hannah M. Jackson
Timothy S. Choi
Jing Chen
Allison M. Banuelos
Jie Liu
Phung Gip
Lei Cheng
Denong Wang
Irving L. Weissman
author_facet Mingye Feng
Kristopher D. Marjon
Fangfang Zhu
Rachel Weissman-Tsukamoto
Aaron Levett
Katie Sullivan
Kevin S. Kao
Maxim Markovic
Paul A. Bump
Hannah M. Jackson
Timothy S. Choi
Jing Chen
Allison M. Banuelos
Jie Liu
Phung Gip
Lei Cheng
Denong Wang
Irving L. Weissman
author_sort Mingye Feng
title Programmed cell removal by calreticulin in tissue homeostasis and cancer
title_short Programmed cell removal by calreticulin in tissue homeostasis and cancer
title_full Programmed cell removal by calreticulin in tissue homeostasis and cancer
title_fullStr Programmed cell removal by calreticulin in tissue homeostasis and cancer
title_full_unstemmed Programmed cell removal by calreticulin in tissue homeostasis and cancer
title_sort programmed cell removal by calreticulin in tissue homeostasis and cancer
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/a1b68cf0ddc143208c23a7ee9e16b82a
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