Chronic activation of endothelial MAPK disrupts hematopoiesis via NFKB dependent inflammatory stress reversible by SCGF

Myelosuppressive injuries lead to chronic MAPK activation and impair blood reconstitution. Here, the authors show that chronic activation endothelial MAPK impairs hematopoietic stem cell (HSC) function through NFkB signaling, and that post-myelosuppressive HSC defects can be reversed by administrati...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Pradeep Ramalingam, Michael G. Poulos, Elisa Lazzari, Michael C. Gutkin, David Lopez, Christopher C. Kloss, Michael J. Crowley, Lizabeth Katsnelson, Ana G. Freire, Matthew B. Greenblatt, Christopher Y. Park, Jason M. Butler
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
Materias:
Q
Acceso en línea:https://doaj.org/article/6b54770221c34086b376c539aef6277a
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:6b54770221c34086b376c539aef6277a
record_format dspace
spelling oai:doaj.org-article:6b54770221c34086b376c539aef6277a2021-12-02T14:41:13ZChronic activation of endothelial MAPK disrupts hematopoiesis via NFKB dependent inflammatory stress reversible by SCGF10.1038/s41467-020-14478-82041-1723https://doaj.org/article/6b54770221c34086b376c539aef6277a2020-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-14478-8https://doaj.org/toc/2041-1723Myelosuppressive injuries lead to chronic MAPK activation and impair blood reconstitution. Here, the authors show that chronic activation endothelial MAPK impairs hematopoietic stem cell (HSC) function through NFkB signaling, and that post-myelosuppressive HSC defects can be reversed by administration of Stem Cell Growth Factor SCGFa.Pradeep RamalingamMichael G. PoulosElisa LazzariMichael C. GutkinDavid LopezChristopher C. KlossMichael J. CrowleyLizabeth KatsnelsonAna G. FreireMatthew B. GreenblattChristopher Y. ParkJason M. ButlerNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-20 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Pradeep Ramalingam
Michael G. Poulos
Elisa Lazzari
Michael C. Gutkin
David Lopez
Christopher C. Kloss
Michael J. Crowley
Lizabeth Katsnelson
Ana G. Freire
Matthew B. Greenblatt
Christopher Y. Park
Jason M. Butler
Chronic activation of endothelial MAPK disrupts hematopoiesis via NFKB dependent inflammatory stress reversible by SCGF
description Myelosuppressive injuries lead to chronic MAPK activation and impair blood reconstitution. Here, the authors show that chronic activation endothelial MAPK impairs hematopoietic stem cell (HSC) function through NFkB signaling, and that post-myelosuppressive HSC defects can be reversed by administration of Stem Cell Growth Factor SCGFa.
format article
author Pradeep Ramalingam
Michael G. Poulos
Elisa Lazzari
Michael C. Gutkin
David Lopez
Christopher C. Kloss
Michael J. Crowley
Lizabeth Katsnelson
Ana G. Freire
Matthew B. Greenblatt
Christopher Y. Park
Jason M. Butler
author_facet Pradeep Ramalingam
Michael G. Poulos
Elisa Lazzari
Michael C. Gutkin
David Lopez
Christopher C. Kloss
Michael J. Crowley
Lizabeth Katsnelson
Ana G. Freire
Matthew B. Greenblatt
Christopher Y. Park
Jason M. Butler
author_sort Pradeep Ramalingam
title Chronic activation of endothelial MAPK disrupts hematopoiesis via NFKB dependent inflammatory stress reversible by SCGF
title_short Chronic activation of endothelial MAPK disrupts hematopoiesis via NFKB dependent inflammatory stress reversible by SCGF
title_full Chronic activation of endothelial MAPK disrupts hematopoiesis via NFKB dependent inflammatory stress reversible by SCGF
title_fullStr Chronic activation of endothelial MAPK disrupts hematopoiesis via NFKB dependent inflammatory stress reversible by SCGF
title_full_unstemmed Chronic activation of endothelial MAPK disrupts hematopoiesis via NFKB dependent inflammatory stress reversible by SCGF
title_sort chronic activation of endothelial mapk disrupts hematopoiesis via nfkb dependent inflammatory stress reversible by scgf
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/6b54770221c34086b376c539aef6277a
work_keys_str_mv AT pradeepramalingam chronicactivationofendothelialmapkdisruptshematopoiesisvianfkbdependentinflammatorystressreversiblebyscgf
AT michaelgpoulos chronicactivationofendothelialmapkdisruptshematopoiesisvianfkbdependentinflammatorystressreversiblebyscgf
AT elisalazzari chronicactivationofendothelialmapkdisruptshematopoiesisvianfkbdependentinflammatorystressreversiblebyscgf
AT michaelcgutkin chronicactivationofendothelialmapkdisruptshematopoiesisvianfkbdependentinflammatorystressreversiblebyscgf
AT davidlopez chronicactivationofendothelialmapkdisruptshematopoiesisvianfkbdependentinflammatorystressreversiblebyscgf
AT christopherckloss chronicactivationofendothelialmapkdisruptshematopoiesisvianfkbdependentinflammatorystressreversiblebyscgf
AT michaeljcrowley chronicactivationofendothelialmapkdisruptshematopoiesisvianfkbdependentinflammatorystressreversiblebyscgf
AT lizabethkatsnelson chronicactivationofendothelialmapkdisruptshematopoiesisvianfkbdependentinflammatorystressreversiblebyscgf
AT anagfreire chronicactivationofendothelialmapkdisruptshematopoiesisvianfkbdependentinflammatorystressreversiblebyscgf
AT matthewbgreenblatt chronicactivationofendothelialmapkdisruptshematopoiesisvianfkbdependentinflammatorystressreversiblebyscgf
AT christopherypark chronicactivationofendothelialmapkdisruptshematopoiesisvianfkbdependentinflammatorystressreversiblebyscgf
AT jasonmbutler chronicactivationofendothelialmapkdisruptshematopoiesisvianfkbdependentinflammatorystressreversiblebyscgf
_version_ 1718389993831923712