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Sickle Cell Trait Increases Red Blood Cell Storage Hemolysis and Post-Transfusion Clearance in Mice

BACKGROUND: Transfusion of blood at the limits of approved storage time is associated with lower red blood cell (RBC) post-transfusion recovery and hemolysis, which increases plasma cell-free hemoglobin and iron, proposed to induce endothelial dysfunction and impair host defense. There is noted vari...

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Autores principales: Osei-Hwedieh, David O., Kanias, Tamir, Croix, Claudette St., Jessup, Morgan, Xiong, Zeyu, Sinchar, Derek, Franks, Jonathan, Xu, Qinzi, M. Novelli, Enrico, Sertorio, Jonas T., Potoka, Karin, Binder, Robert J., Basu, Swati, Belanger, Andrea M., Kim-Shapiro, Daniel B., Triulzi, Darrell, Lee, Janet S., Gladwin, Mark T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5049931/
https://www.ncbi.nlm.nih.gov/pubmed/27523807
http://dx.doi.org/10.1016/j.ebiom.2016.08.006
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author Osei-Hwedieh, David O.
Kanias, Tamir
Croix, Claudette St.
Jessup, Morgan
Xiong, Zeyu
Sinchar, Derek
Franks, Jonathan
Xu, Qinzi
M. Novelli, Enrico
Sertorio, Jonas T.
Potoka, Karin
Binder, Robert J.
Basu, Swati
Belanger, Andrea M.
Kim-Shapiro, Daniel B.
Triulzi, Darrell
Lee, Janet S.
Gladwin, Mark T.
author_facet Osei-Hwedieh, David O.
Kanias, Tamir
Croix, Claudette St.
Jessup, Morgan
Xiong, Zeyu
Sinchar, Derek
Franks, Jonathan
Xu, Qinzi
M. Novelli, Enrico
Sertorio, Jonas T.
Potoka, Karin
Binder, Robert J.
Basu, Swati
Belanger, Andrea M.
Kim-Shapiro, Daniel B.
Triulzi, Darrell
Lee, Janet S.
Gladwin, Mark T.
author_sort Osei-Hwedieh, David O.
collection PubMed
description BACKGROUND: Transfusion of blood at the limits of approved storage time is associated with lower red blood cell (RBC) post-transfusion recovery and hemolysis, which increases plasma cell-free hemoglobin and iron, proposed to induce endothelial dysfunction and impair host defense. There is noted variability among donors in the intrinsic rate of storage changes and RBC post-transfusion recovery, yet genetic determinants that modulate this process are unclear. METHODS: We explore RBC storage stability and post-transfusion recovery in murine models of allogeneic and xenogeneic transfusion using blood from humanized transgenic sickle cell hemizygous mice (Hba(tm1Paz)Hbb(tm1Tow)Tg(HBA-HBBs)41Paz/J) and human donors with a common genetic mutation sickle cell trait (HbAS). FINDINGS: Human and transgenic HbAS RBCs demonstrate accelerated storage time-dependent hemolysis and reduced post-transfusion recovery in mice. The rapid post-transfusion clearance of stored HbAS RBC is unrelated to macrophage-mediated uptake or intravascular hemolysis, but by enhanced sequestration in the spleen, kidney and liver. HbAS RBCs are intrinsically different from HbAA RBCs, with reduced membrane deformability as cells age in cold storage, leading to accelerated clearance of transfused HbAS RBCs by entrapment in organ microcirculation. INTERPRETATION: The common genetic variant HbAS enhances RBC storage dysfunction and raises provocative questions about the use of HbAS RBCs at the limits of approved storage.
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spelling pubmed-50499312016-10-07 Sickle Cell Trait Increases Red Blood Cell Storage Hemolysis and Post-Transfusion Clearance in Mice Osei-Hwedieh, David O. Kanias, Tamir Croix, Claudette St. Jessup, Morgan Xiong, Zeyu Sinchar, Derek Franks, Jonathan Xu, Qinzi M. Novelli, Enrico Sertorio, Jonas T. Potoka, Karin Binder, Robert J. Basu, Swati Belanger, Andrea M. Kim-Shapiro, Daniel B. Triulzi, Darrell Lee, Janet S. Gladwin, Mark T. EBioMedicine Research Paper BACKGROUND: Transfusion of blood at the limits of approved storage time is associated with lower red blood cell (RBC) post-transfusion recovery and hemolysis, which increases plasma cell-free hemoglobin and iron, proposed to induce endothelial dysfunction and impair host defense. There is noted variability among donors in the intrinsic rate of storage changes and RBC post-transfusion recovery, yet genetic determinants that modulate this process are unclear. METHODS: We explore RBC storage stability and post-transfusion recovery in murine models of allogeneic and xenogeneic transfusion using blood from humanized transgenic sickle cell hemizygous mice (Hba(tm1Paz)Hbb(tm1Tow)Tg(HBA-HBBs)41Paz/J) and human donors with a common genetic mutation sickle cell trait (HbAS). FINDINGS: Human and transgenic HbAS RBCs demonstrate accelerated storage time-dependent hemolysis and reduced post-transfusion recovery in mice. The rapid post-transfusion clearance of stored HbAS RBC is unrelated to macrophage-mediated uptake or intravascular hemolysis, but by enhanced sequestration in the spleen, kidney and liver. HbAS RBCs are intrinsically different from HbAA RBCs, with reduced membrane deformability as cells age in cold storage, leading to accelerated clearance of transfused HbAS RBCs by entrapment in organ microcirculation. INTERPRETATION: The common genetic variant HbAS enhances RBC storage dysfunction and raises provocative questions about the use of HbAS RBCs at the limits of approved storage. Elsevier 2016-08-04 /pmc/articles/PMC5049931/ /pubmed/27523807 http://dx.doi.org/10.1016/j.ebiom.2016.08.006 Text en © 2016 Forschungsgesellschaft für Arbeitsphysiologie und Arbeitschutz e.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Osei-Hwedieh, David O.
Kanias, Tamir
Croix, Claudette St.
Jessup, Morgan
Xiong, Zeyu
Sinchar, Derek
Franks, Jonathan
Xu, Qinzi
M. Novelli, Enrico
Sertorio, Jonas T.
Potoka, Karin
Binder, Robert J.
Basu, Swati
Belanger, Andrea M.
Kim-Shapiro, Daniel B.
Triulzi, Darrell
Lee, Janet S.
Gladwin, Mark T.
Sickle Cell Trait Increases Red Blood Cell Storage Hemolysis and Post-Transfusion Clearance in Mice
title Sickle Cell Trait Increases Red Blood Cell Storage Hemolysis and Post-Transfusion Clearance in Mice
title_full Sickle Cell Trait Increases Red Blood Cell Storage Hemolysis and Post-Transfusion Clearance in Mice
title_fullStr Sickle Cell Trait Increases Red Blood Cell Storage Hemolysis and Post-Transfusion Clearance in Mice
title_full_unstemmed Sickle Cell Trait Increases Red Blood Cell Storage Hemolysis and Post-Transfusion Clearance in Mice
title_short Sickle Cell Trait Increases Red Blood Cell Storage Hemolysis and Post-Transfusion Clearance in Mice
title_sort sickle cell trait increases red blood cell storage hemolysis and post-transfusion clearance in mice
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5049931/
https://www.ncbi.nlm.nih.gov/pubmed/27523807
http://dx.doi.org/10.1016/j.ebiom.2016.08.006
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