A highly efficient and faithful MDS patient-derived xenotransplantation model for pre-clinical studies
Myelodyplastic hematopoietic stem cells (MDS HSC) have eluded in vivo modeling. Here the authors present a highly efficient MDS patient-derived xenotransplantation model in cytokine-humanized mice with replication of the donors’ genetic complexity and myeloid, erythroid, and megakaryocytic lineage d...
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Nature Portfolio
2019
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oai:doaj.org-article:bcd8edb0cae9459b894b2cf494c1bf392021-12-02T14:35:56ZA highly efficient and faithful MDS patient-derived xenotransplantation model for pre-clinical studies10.1038/s41467-018-08166-x2041-1723https://doaj.org/article/bcd8edb0cae9459b894b2cf494c1bf392019-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-08166-xhttps://doaj.org/toc/2041-1723Myelodyplastic hematopoietic stem cells (MDS HSC) have eluded in vivo modeling. Here the authors present a highly efficient MDS patient-derived xenotransplantation model in cytokine-humanized mice with replication of the donors’ genetic complexity and myeloid, erythroid, and megakaryocytic lineage dysplasia.Yuanbin SongAnthony RongvauxAshley TaylorTingting JiangToma TebaldiKunthavai BalasubramanianArun BagaleYunus Kasim TerziRana GbyliXiaman WangXiaoying FuYimeng GaoJun ZhaoNikolai PodoltsevMina XuNatalia NeparidzeEllice WongRichard TorresEmanuela M. BrusciaYuval KlugerMarkus G. ManzRichard A. FlavellStephanie HaleneNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-14 (2019) |
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Science Q Yuanbin Song Anthony Rongvaux Ashley Taylor Tingting Jiang Toma Tebaldi Kunthavai Balasubramanian Arun Bagale Yunus Kasim Terzi Rana Gbyli Xiaman Wang Xiaoying Fu Yimeng Gao Jun Zhao Nikolai Podoltsev Mina Xu Natalia Neparidze Ellice Wong Richard Torres Emanuela M. Bruscia Yuval Kluger Markus G. Manz Richard A. Flavell Stephanie Halene A highly efficient and faithful MDS patient-derived xenotransplantation model for pre-clinical studies |
description |
Myelodyplastic hematopoietic stem cells (MDS HSC) have eluded in vivo modeling. Here the authors present a highly efficient MDS patient-derived xenotransplantation model in cytokine-humanized mice with replication of the donors’ genetic complexity and myeloid, erythroid, and megakaryocytic lineage dysplasia. |
format |
article |
author |
Yuanbin Song Anthony Rongvaux Ashley Taylor Tingting Jiang Toma Tebaldi Kunthavai Balasubramanian Arun Bagale Yunus Kasim Terzi Rana Gbyli Xiaman Wang Xiaoying Fu Yimeng Gao Jun Zhao Nikolai Podoltsev Mina Xu Natalia Neparidze Ellice Wong Richard Torres Emanuela M. Bruscia Yuval Kluger Markus G. Manz Richard A. Flavell Stephanie Halene |
author_facet |
Yuanbin Song Anthony Rongvaux Ashley Taylor Tingting Jiang Toma Tebaldi Kunthavai Balasubramanian Arun Bagale Yunus Kasim Terzi Rana Gbyli Xiaman Wang Xiaoying Fu Yimeng Gao Jun Zhao Nikolai Podoltsev Mina Xu Natalia Neparidze Ellice Wong Richard Torres Emanuela M. Bruscia Yuval Kluger Markus G. Manz Richard A. Flavell Stephanie Halene |
author_sort |
Yuanbin Song |
title |
A highly efficient and faithful MDS patient-derived xenotransplantation model for pre-clinical studies |
title_short |
A highly efficient and faithful MDS patient-derived xenotransplantation model for pre-clinical studies |
title_full |
A highly efficient and faithful MDS patient-derived xenotransplantation model for pre-clinical studies |
title_fullStr |
A highly efficient and faithful MDS patient-derived xenotransplantation model for pre-clinical studies |
title_full_unstemmed |
A highly efficient and faithful MDS patient-derived xenotransplantation model for pre-clinical studies |
title_sort |
highly efficient and faithful mds patient-derived xenotransplantation model for pre-clinical studies |
publisher |
Nature Portfolio |
publishDate |
2019 |
url |
https://doaj.org/article/bcd8edb0cae9459b894b2cf494c1bf39 |
work_keys_str_mv |
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