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Analysis of parameters that affect human hematopoietic cell outputs in mutant c-kit-immunodeficient mice

Xenograft models are transforming our understanding of the output capabilities of primitive human hematopoietic cells in vivo. However, many variables that affect posttransplantation reconstitution dynamics remain poorly understood. Here, we show that an equivalent level of human chimerism can be re...

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Autores principales: Miller, Paul H., Rabu, Gabrielle, MacAldaz, Margarita, Knapp, David J.H.F., Cheung, Alice M.S., Dhillon, Kiran, Nakamichi, Naoto, Beer, Philip A., Shultz, Leonard D., Humphries, R. Keith, Eaves, Connie J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5926796/
https://www.ncbi.nlm.nih.gov/pubmed/28087429
http://dx.doi.org/10.1016/j.exphem.2016.12.012
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author Miller, Paul H.
Rabu, Gabrielle
MacAldaz, Margarita
Knapp, David J.H.F.
Cheung, Alice M.S.
Dhillon, Kiran
Nakamichi, Naoto
Beer, Philip A.
Shultz, Leonard D.
Humphries, R. Keith
Eaves, Connie J.
author_facet Miller, Paul H.
Rabu, Gabrielle
MacAldaz, Margarita
Knapp, David J.H.F.
Cheung, Alice M.S.
Dhillon, Kiran
Nakamichi, Naoto
Beer, Philip A.
Shultz, Leonard D.
Humphries, R. Keith
Eaves, Connie J.
author_sort Miller, Paul H.
collection PubMed
description Xenograft models are transforming our understanding of the output capabilities of primitive human hematopoietic cells in vivo. However, many variables that affect posttransplantation reconstitution dynamics remain poorly understood. Here, we show that an equivalent level of human chimerism can be regenerated from human CD34(+) cord blood cells transplanted intravenously either with or without additional radiation-inactivated cells into 2- to 6-month-old NOD-Rag1(−/−)-IL2Rγc(−/−) (NRG) mice given a more radioprotective conditioning regimen than is possible in conventionally used, repair-deficient NOD-Prkdc(scid/scid)-IL2Rγc(−/−)(NSG) hosts. Comparison of sublethally irradiated and non-irradiated NRG mice and W(41)/W(41) derivatives showed superior chimerism in the W(41)-deficient recipients, with some differential effects on different lineage outputs. Consistently superior outputs were observed in female recipients regardless of their genotype, age, or pretransplantation conditioning, with greater differences apparent later after transplantation. These results define key parameters for optimizing the sensitivity and minimizing the intraexperimental variability of human hematopoietic xenografts generated in increasingly supportive immunodeficient host mice.
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spelling pubmed-59267962018-04-30 Analysis of parameters that affect human hematopoietic cell outputs in mutant c-kit-immunodeficient mice Miller, Paul H. Rabu, Gabrielle MacAldaz, Margarita Knapp, David J.H.F. Cheung, Alice M.S. Dhillon, Kiran Nakamichi, Naoto Beer, Philip A. Shultz, Leonard D. Humphries, R. Keith Eaves, Connie J. Exp Hematol Article Xenograft models are transforming our understanding of the output capabilities of primitive human hematopoietic cells in vivo. However, many variables that affect posttransplantation reconstitution dynamics remain poorly understood. Here, we show that an equivalent level of human chimerism can be regenerated from human CD34(+) cord blood cells transplanted intravenously either with or without additional radiation-inactivated cells into 2- to 6-month-old NOD-Rag1(−/−)-IL2Rγc(−/−) (NRG) mice given a more radioprotective conditioning regimen than is possible in conventionally used, repair-deficient NOD-Prkdc(scid/scid)-IL2Rγc(−/−)(NSG) hosts. Comparison of sublethally irradiated and non-irradiated NRG mice and W(41)/W(41) derivatives showed superior chimerism in the W(41)-deficient recipients, with some differential effects on different lineage outputs. Consistently superior outputs were observed in female recipients regardless of their genotype, age, or pretransplantation conditioning, with greater differences apparent later after transplantation. These results define key parameters for optimizing the sensitivity and minimizing the intraexperimental variability of human hematopoietic xenografts generated in increasingly supportive immunodeficient host mice. 2017-01-11 2017-04 /pmc/articles/PMC5926796/ /pubmed/28087429 http://dx.doi.org/10.1016/j.exphem.2016.12.012 Text en 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 Article
Miller, Paul H.
Rabu, Gabrielle
MacAldaz, Margarita
Knapp, David J.H.F.
Cheung, Alice M.S.
Dhillon, Kiran
Nakamichi, Naoto
Beer, Philip A.
Shultz, Leonard D.
Humphries, R. Keith
Eaves, Connie J.
Analysis of parameters that affect human hematopoietic cell outputs in mutant c-kit-immunodeficient mice
title Analysis of parameters that affect human hematopoietic cell outputs in mutant c-kit-immunodeficient mice
title_full Analysis of parameters that affect human hematopoietic cell outputs in mutant c-kit-immunodeficient mice
title_fullStr Analysis of parameters that affect human hematopoietic cell outputs in mutant c-kit-immunodeficient mice
title_full_unstemmed Analysis of parameters that affect human hematopoietic cell outputs in mutant c-kit-immunodeficient mice
title_short Analysis of parameters that affect human hematopoietic cell outputs in mutant c-kit-immunodeficient mice
title_sort analysis of parameters that affect human hematopoietic cell outputs in mutant c-kit-immunodeficient mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5926796/
https://www.ncbi.nlm.nih.gov/pubmed/28087429
http://dx.doi.org/10.1016/j.exphem.2016.12.012
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