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CXCR2 modulates bone marrow vascular repair and haematopoietic recovery post‐transplant

Murine models of bone marrow transplantation show that pre‐conditioning regimens affect the integrity of the bone marrow endothelium and that the repair of this vascular niche is an essential pre‐requisite for successful haematopoietic stem and progenitor cell engraftment. Little is known about the...

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Autores principales: Hale, Sarah J. M., Hale, Ashley B. H., Zhang, Youyi, Sweeney, Dominic, Fisher, Nita, van der Garde, Mark, Grabowska, Rita, Pepperell, Emma, Channon, Keith, Martin‐Rendon, Enca, Watt, Suzanne M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4654909/
https://www.ncbi.nlm.nih.gov/pubmed/25757087
http://dx.doi.org/10.1111/bjh.13335
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author Hale, Sarah J. M.
Hale, Ashley B. H.
Zhang, Youyi
Sweeney, Dominic
Fisher, Nita
van der Garde, Mark
Grabowska, Rita
Pepperell, Emma
Channon, Keith
Martin‐Rendon, Enca
Watt, Suzanne M.
author_facet Hale, Sarah J. M.
Hale, Ashley B. H.
Zhang, Youyi
Sweeney, Dominic
Fisher, Nita
van der Garde, Mark
Grabowska, Rita
Pepperell, Emma
Channon, Keith
Martin‐Rendon, Enca
Watt, Suzanne M.
author_sort Hale, Sarah J. M.
collection PubMed
description Murine models of bone marrow transplantation show that pre‐conditioning regimens affect the integrity of the bone marrow endothelium and that the repair of this vascular niche is an essential pre‐requisite for successful haematopoietic stem and progenitor cell engraftment. Little is known about the angiogenic pathways that play a role in the repair of the human bone marrow vascular niche. We therefore established an in vitro humanized model, composed of bone marrow stromal and endothelial cells and have identified several pro‐angiogenic factors, VEGFA, ANGPT1, CXCL8 and CXCL16, produced by the stromal component of this niche. We demonstrate for the first time that addition of CXCL8 or inhibition of its receptor, CXCR2, modulates blood vessel formation in our bone marrow endothelial niche model. Compared to wild type, Cxcr2 (−/−) mice displayed a reduction in bone marrow cellularity and delayed platelet and leucocyte recovery following myeloablation and bone marrow transplantation. The delay in bone marrow recovery correlated with impaired bone marrow vascular repair. Taken together, our data demonstrate that CXCR2 regulates bone marrow blood vessel repair/regeneration and haematopoietic recovery, and clinically may be a therapeutic target for improving bone marrow transplantation.
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spelling pubmed-46549092015-11-27 CXCR2 modulates bone marrow vascular repair and haematopoietic recovery post‐transplant Hale, Sarah J. M. Hale, Ashley B. H. Zhang, Youyi Sweeney, Dominic Fisher, Nita van der Garde, Mark Grabowska, Rita Pepperell, Emma Channon, Keith Martin‐Rendon, Enca Watt, Suzanne M. Br J Haematol Haematological Malignancy Murine models of bone marrow transplantation show that pre‐conditioning regimens affect the integrity of the bone marrow endothelium and that the repair of this vascular niche is an essential pre‐requisite for successful haematopoietic stem and progenitor cell engraftment. Little is known about the angiogenic pathways that play a role in the repair of the human bone marrow vascular niche. We therefore established an in vitro humanized model, composed of bone marrow stromal and endothelial cells and have identified several pro‐angiogenic factors, VEGFA, ANGPT1, CXCL8 and CXCL16, produced by the stromal component of this niche. We demonstrate for the first time that addition of CXCL8 or inhibition of its receptor, CXCR2, modulates blood vessel formation in our bone marrow endothelial niche model. Compared to wild type, Cxcr2 (−/−) mice displayed a reduction in bone marrow cellularity and delayed platelet and leucocyte recovery following myeloablation and bone marrow transplantation. The delay in bone marrow recovery correlated with impaired bone marrow vascular repair. Taken together, our data demonstrate that CXCR2 regulates bone marrow blood vessel repair/regeneration and haematopoietic recovery, and clinically may be a therapeutic target for improving bone marrow transplantation. John Wiley and Sons Inc. 2015-03-09 2015-05 /pmc/articles/PMC4654909/ /pubmed/25757087 http://dx.doi.org/10.1111/bjh.13335 Text en © 2015 The Authors. British Journal of Haematology published by John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Haematological Malignancy
Hale, Sarah J. M.
Hale, Ashley B. H.
Zhang, Youyi
Sweeney, Dominic
Fisher, Nita
van der Garde, Mark
Grabowska, Rita
Pepperell, Emma
Channon, Keith
Martin‐Rendon, Enca
Watt, Suzanne M.
CXCR2 modulates bone marrow vascular repair and haematopoietic recovery post‐transplant
title CXCR2 modulates bone marrow vascular repair and haematopoietic recovery post‐transplant
title_full CXCR2 modulates bone marrow vascular repair and haematopoietic recovery post‐transplant
title_fullStr CXCR2 modulates bone marrow vascular repair and haematopoietic recovery post‐transplant
title_full_unstemmed CXCR2 modulates bone marrow vascular repair and haematopoietic recovery post‐transplant
title_short CXCR2 modulates bone marrow vascular repair and haematopoietic recovery post‐transplant
title_sort cxcr2 modulates bone marrow vascular repair and haematopoietic recovery post‐transplant
topic Haematological Malignancy
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4654909/
https://www.ncbi.nlm.nih.gov/pubmed/25757087
http://dx.doi.org/10.1111/bjh.13335
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