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Macrophage galactose lectin is critical for Kupffer cells to clear aged platelets

Every day, megakaryocytes produce billions of platelets that circulate for several days and eventually are cleared by the liver. The exact removal mechanism, however, remains unclear. Loss of sialic acid residues is thought to feature in the aging and clearance of platelets. Using state-of-the-art s...

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Autores principales: Deppermann, Carsten, Kratofil, Rachel M., Peiseler, Moritz, David, Bruna A., Zindel, Joel, Castanheira, Fernanda Vargas E Silva, van der Wal, Fardau, Carestia, Agostina, Jenne, Craig N., Marth, Jamey D., Kubes, Paul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Rockefeller University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7144524/
https://www.ncbi.nlm.nih.gov/pubmed/31978220
http://dx.doi.org/10.1084/jem.20190723
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author Deppermann, Carsten
Kratofil, Rachel M.
Peiseler, Moritz
David, Bruna A.
Zindel, Joel
Castanheira, Fernanda Vargas E Silva
van der Wal, Fardau
Carestia, Agostina
Jenne, Craig N.
Marth, Jamey D.
Kubes, Paul
author_facet Deppermann, Carsten
Kratofil, Rachel M.
Peiseler, Moritz
David, Bruna A.
Zindel, Joel
Castanheira, Fernanda Vargas E Silva
van der Wal, Fardau
Carestia, Agostina
Jenne, Craig N.
Marth, Jamey D.
Kubes, Paul
author_sort Deppermann, Carsten
collection PubMed
description Every day, megakaryocytes produce billions of platelets that circulate for several days and eventually are cleared by the liver. The exact removal mechanism, however, remains unclear. Loss of sialic acid residues is thought to feature in the aging and clearance of platelets. Using state-of-the-art spinning disk intravital microscopy to delineate the different compartments and cells of the mouse liver, we observed rapid accumulation of desialylated platelets predominantly on Kupffer cells, with only a few on endothelial cells and none on hepatocytes. Kupffer cell depletion prevented the removal of aged platelets from circulation. Ashwell-Morell receptor (AMR) deficiency alone had little effect on platelet uptake. Macrophage galactose lectin (MGL) together with AMR mediated clearance of desialylated or cold-stored platelets by Kupffer cells. Effective clearance is critical, as mice with an aged platelet population displayed a bleeding phenotype. Our data provide evidence that the MGL of Kupffer cells plays a significant role in the removal of desialylated platelets through a collaboration with the AMR, thereby maintaining a healthy and functional platelet compartment.
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spelling pubmed-71445242020-10-06 Macrophage galactose lectin is critical for Kupffer cells to clear aged platelets Deppermann, Carsten Kratofil, Rachel M. Peiseler, Moritz David, Bruna A. Zindel, Joel Castanheira, Fernanda Vargas E Silva van der Wal, Fardau Carestia, Agostina Jenne, Craig N. Marth, Jamey D. Kubes, Paul J Exp Med Article Every day, megakaryocytes produce billions of platelets that circulate for several days and eventually are cleared by the liver. The exact removal mechanism, however, remains unclear. Loss of sialic acid residues is thought to feature in the aging and clearance of platelets. Using state-of-the-art spinning disk intravital microscopy to delineate the different compartments and cells of the mouse liver, we observed rapid accumulation of desialylated platelets predominantly on Kupffer cells, with only a few on endothelial cells and none on hepatocytes. Kupffer cell depletion prevented the removal of aged platelets from circulation. Ashwell-Morell receptor (AMR) deficiency alone had little effect on platelet uptake. Macrophage galactose lectin (MGL) together with AMR mediated clearance of desialylated or cold-stored platelets by Kupffer cells. Effective clearance is critical, as mice with an aged platelet population displayed a bleeding phenotype. Our data provide evidence that the MGL of Kupffer cells plays a significant role in the removal of desialylated platelets through a collaboration with the AMR, thereby maintaining a healthy and functional platelet compartment. Rockefeller University Press 2020-01-24 /pmc/articles/PMC7144524/ /pubmed/31978220 http://dx.doi.org/10.1084/jem.20190723 Text en © 2020 Crown copyright. The government of Australia, Canada, or the UK ("the Crown") owns the copyright interests of authors who are government employees. The Crown Copyright is not transferable. http://www.rupress.org/terms/https://creativecommons.org/licenses/by-nc-sa/4.0/This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms/). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 International license, as described at https://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Deppermann, Carsten
Kratofil, Rachel M.
Peiseler, Moritz
David, Bruna A.
Zindel, Joel
Castanheira, Fernanda Vargas E Silva
van der Wal, Fardau
Carestia, Agostina
Jenne, Craig N.
Marth, Jamey D.
Kubes, Paul
Macrophage galactose lectin is critical for Kupffer cells to clear aged platelets
title Macrophage galactose lectin is critical for Kupffer cells to clear aged platelets
title_full Macrophage galactose lectin is critical for Kupffer cells to clear aged platelets
title_fullStr Macrophage galactose lectin is critical for Kupffer cells to clear aged platelets
title_full_unstemmed Macrophage galactose lectin is critical for Kupffer cells to clear aged platelets
title_short Macrophage galactose lectin is critical for Kupffer cells to clear aged platelets
title_sort macrophage galactose lectin is critical for kupffer cells to clear aged platelets
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7144524/
https://www.ncbi.nlm.nih.gov/pubmed/31978220
http://dx.doi.org/10.1084/jem.20190723
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