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Sustained Engraftment of Cryopreserved Human Bone Marrow CD34(+) Cells in Young Adult NSG Mice

Hematopoietic stem cells (HSCs) are defined by their ability to repopulate the bone marrow of myeloablative conditioned and/or (lethally) irradiated recipients. To study the repopulating potential of human HSCs, murine models have been developed that rely on the use of immunodeficient mice that allo...

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Autores principales: Wiekmeijer, Anna-Sophia, Pike-Overzet, Karin, Brugman, Martijn H., Salvatori, Daniela C.F., Egeler, R. Maarten, Bredius, Robbert G.M., Fibbe, Willem E., Staal, Frank J.T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Mary Ann Liebert, Inc. 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4048975/
https://www.ncbi.nlm.nih.gov/pubmed/24940562
http://dx.doi.org/10.1089/biores.2014.0008
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author Wiekmeijer, Anna-Sophia
Pike-Overzet, Karin
Brugman, Martijn H.
Salvatori, Daniela C.F.
Egeler, R. Maarten
Bredius, Robbert G.M.
Fibbe, Willem E.
Staal, Frank J.T.
author_facet Wiekmeijer, Anna-Sophia
Pike-Overzet, Karin
Brugman, Martijn H.
Salvatori, Daniela C.F.
Egeler, R. Maarten
Bredius, Robbert G.M.
Fibbe, Willem E.
Staal, Frank J.T.
author_sort Wiekmeijer, Anna-Sophia
collection PubMed
description Hematopoietic stem cells (HSCs) are defined by their ability to repopulate the bone marrow of myeloablative conditioned and/or (lethally) irradiated recipients. To study the repopulating potential of human HSCs, murine models have been developed that rely on the use of immunodeficient mice that allow engraftment of human cells. The NSG xenograft model has emerged as the current standard for this purpose allowing for engraftment and study of human T cells. Here, we describe adaptations to the original NSG xenograft model that can be readily implemented. These adaptations encompass use of adult mice instead of newborns and a short ex vivo culture. This protocol results in robust and reproducible high levels of lympho-myeloid engraftment. Immunization of recipient mice with relevant antigen resulted in specific antibody formation, showing that both T cells and B cells were functional. In addition, bone marrow cells from primary recipients exhibited repopulating ability following transplantation into secondary recipients. Similar results were obtained with cryopreserved human bone marrow samples, thus circumventing the need for fresh cells and allowing the use of patient derived bio-bank samples. Our findings have implications for use of this model in fundamental stem cell research, immunological studies in vivo and preclinical evaluations for HSC transplantation, expansion, and genetic modification.
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spelling pubmed-40489752014-06-17 Sustained Engraftment of Cryopreserved Human Bone Marrow CD34(+) Cells in Young Adult NSG Mice Wiekmeijer, Anna-Sophia Pike-Overzet, Karin Brugman, Martijn H. Salvatori, Daniela C.F. Egeler, R. Maarten Bredius, Robbert G.M. Fibbe, Willem E. Staal, Frank J.T. Biores Open Access Original Research Articles Hematopoietic stem cells (HSCs) are defined by their ability to repopulate the bone marrow of myeloablative conditioned and/or (lethally) irradiated recipients. To study the repopulating potential of human HSCs, murine models have been developed that rely on the use of immunodeficient mice that allow engraftment of human cells. The NSG xenograft model has emerged as the current standard for this purpose allowing for engraftment and study of human T cells. Here, we describe adaptations to the original NSG xenograft model that can be readily implemented. These adaptations encompass use of adult mice instead of newborns and a short ex vivo culture. This protocol results in robust and reproducible high levels of lympho-myeloid engraftment. Immunization of recipient mice with relevant antigen resulted in specific antibody formation, showing that both T cells and B cells were functional. In addition, bone marrow cells from primary recipients exhibited repopulating ability following transplantation into secondary recipients. Similar results were obtained with cryopreserved human bone marrow samples, thus circumventing the need for fresh cells and allowing the use of patient derived bio-bank samples. Our findings have implications for use of this model in fundamental stem cell research, immunological studies in vivo and preclinical evaluations for HSC transplantation, expansion, and genetic modification. Mary Ann Liebert, Inc. 2014-06-01 /pmc/articles/PMC4048975/ /pubmed/24940562 http://dx.doi.org/10.1089/biores.2014.0008 Text en Copyright 2014, Mary Ann Liebert, Inc.
spellingShingle Original Research Articles
Wiekmeijer, Anna-Sophia
Pike-Overzet, Karin
Brugman, Martijn H.
Salvatori, Daniela C.F.
Egeler, R. Maarten
Bredius, Robbert G.M.
Fibbe, Willem E.
Staal, Frank J.T.
Sustained Engraftment of Cryopreserved Human Bone Marrow CD34(+) Cells in Young Adult NSG Mice
title Sustained Engraftment of Cryopreserved Human Bone Marrow CD34(+) Cells in Young Adult NSG Mice
title_full Sustained Engraftment of Cryopreserved Human Bone Marrow CD34(+) Cells in Young Adult NSG Mice
title_fullStr Sustained Engraftment of Cryopreserved Human Bone Marrow CD34(+) Cells in Young Adult NSG Mice
title_full_unstemmed Sustained Engraftment of Cryopreserved Human Bone Marrow CD34(+) Cells in Young Adult NSG Mice
title_short Sustained Engraftment of Cryopreserved Human Bone Marrow CD34(+) Cells in Young Adult NSG Mice
title_sort sustained engraftment of cryopreserved human bone marrow cd34(+) cells in young adult nsg mice
topic Original Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4048975/
https://www.ncbi.nlm.nih.gov/pubmed/24940562
http://dx.doi.org/10.1089/biores.2014.0008
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