Cargando…

Establishment of a Humanized APL Model via the Transplantation of PML-RARA-Transduced Human Common Myeloid Progenitors into Immunodeficient Mice

Recent advances in cancer biology have revealed that many malignancies possess a hierarchal system, and leukemic stem cells (LSC) or leukemia-initiating cells (LIC) appear to be obligatory for disease progression. Acute promyelocytic leukemia (APL), a subtype of acute myeloid leukemia characterized...

Descripción completa

Detalles Bibliográficos
Autores principales: Matsushita, Hiromichi, Yahata, Takashi, Sheng, Yin, Nakamura, Yoshihiko, Muguruma, Yukari, Matsuzawa, Hideyuki, Tanaka, Masayuki, Hayashi, Hideki, Sato, Tadayuki, Damdinsuren, Anar, Onizuka, Makoto, Ito, Mamoru, Miyachi, Hayato, Pandolfi, Pier Paolo, Ando, Kiyoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4219701/
https://www.ncbi.nlm.nih.gov/pubmed/25369030
http://dx.doi.org/10.1371/journal.pone.0111082
_version_ 1782342622837211136
author Matsushita, Hiromichi
Yahata, Takashi
Sheng, Yin
Nakamura, Yoshihiko
Muguruma, Yukari
Matsuzawa, Hideyuki
Tanaka, Masayuki
Hayashi, Hideki
Sato, Tadayuki
Damdinsuren, Anar
Onizuka, Makoto
Ito, Mamoru
Miyachi, Hayato
Pandolfi, Pier Paolo
Ando, Kiyoshi
author_facet Matsushita, Hiromichi
Yahata, Takashi
Sheng, Yin
Nakamura, Yoshihiko
Muguruma, Yukari
Matsuzawa, Hideyuki
Tanaka, Masayuki
Hayashi, Hideki
Sato, Tadayuki
Damdinsuren, Anar
Onizuka, Makoto
Ito, Mamoru
Miyachi, Hayato
Pandolfi, Pier Paolo
Ando, Kiyoshi
author_sort Matsushita, Hiromichi
collection PubMed
description Recent advances in cancer biology have revealed that many malignancies possess a hierarchal system, and leukemic stem cells (LSC) or leukemia-initiating cells (LIC) appear to be obligatory for disease progression. Acute promyelocytic leukemia (APL), a subtype of acute myeloid leukemia characterized by the formation of a PML-RARα fusion protein, leads to the accumulation of abnormal promyelocytes. In order to understand the precise mechanisms involved in human APL leukemogenesis, we established a humanized in vivo APL model involving retroviral transduction of PML-RARA into CD34(+) hematopoietic cells from human cord blood and transplantation of these cells into immunodeficient mice. The leukemia well recapitulated human APL, consisting of leukemic cells with abundant azurophilic abnormal granules in the cytoplasm, which expressed CD13, CD33 and CD117, but not HLA-DR and CD34, were clustered in the same category as human APL samples in the gene expression analysis, and demonstrated sensitivity to ATRA. As seen in human APL, the induced APL cells showed a low transplantation efficiency in the secondary recipients, which was also exhibited in the transplantations that were carried out using the sorted CD34(−) fraction. In order to analyze the mechanisms underlying APL initiation and development, fractionated human cord blood was transduced with PML-RARA. Common myeloid progenitors (CMP) from CD34(+)/CD38(+) cells developed APL. These findings demonstrate that CMP are a target fraction for PML-RARA in APL, whereas the resultant CD34(−) APL cells may share the ability to maintain the tumor.
format Online
Article
Text
id pubmed-4219701
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-42197012014-11-12 Establishment of a Humanized APL Model via the Transplantation of PML-RARA-Transduced Human Common Myeloid Progenitors into Immunodeficient Mice Matsushita, Hiromichi Yahata, Takashi Sheng, Yin Nakamura, Yoshihiko Muguruma, Yukari Matsuzawa, Hideyuki Tanaka, Masayuki Hayashi, Hideki Sato, Tadayuki Damdinsuren, Anar Onizuka, Makoto Ito, Mamoru Miyachi, Hayato Pandolfi, Pier Paolo Ando, Kiyoshi PLoS One Research Article Recent advances in cancer biology have revealed that many malignancies possess a hierarchal system, and leukemic stem cells (LSC) or leukemia-initiating cells (LIC) appear to be obligatory for disease progression. Acute promyelocytic leukemia (APL), a subtype of acute myeloid leukemia characterized by the formation of a PML-RARα fusion protein, leads to the accumulation of abnormal promyelocytes. In order to understand the precise mechanisms involved in human APL leukemogenesis, we established a humanized in vivo APL model involving retroviral transduction of PML-RARA into CD34(+) hematopoietic cells from human cord blood and transplantation of these cells into immunodeficient mice. The leukemia well recapitulated human APL, consisting of leukemic cells with abundant azurophilic abnormal granules in the cytoplasm, which expressed CD13, CD33 and CD117, but not HLA-DR and CD34, were clustered in the same category as human APL samples in the gene expression analysis, and demonstrated sensitivity to ATRA. As seen in human APL, the induced APL cells showed a low transplantation efficiency in the secondary recipients, which was also exhibited in the transplantations that were carried out using the sorted CD34(−) fraction. In order to analyze the mechanisms underlying APL initiation and development, fractionated human cord blood was transduced with PML-RARA. Common myeloid progenitors (CMP) from CD34(+)/CD38(+) cells developed APL. These findings demonstrate that CMP are a target fraction for PML-RARA in APL, whereas the resultant CD34(−) APL cells may share the ability to maintain the tumor. Public Library of Science 2014-11-04 /pmc/articles/PMC4219701/ /pubmed/25369030 http://dx.doi.org/10.1371/journal.pone.0111082 Text en © 2014 Matsushita et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Matsushita, Hiromichi
Yahata, Takashi
Sheng, Yin
Nakamura, Yoshihiko
Muguruma, Yukari
Matsuzawa, Hideyuki
Tanaka, Masayuki
Hayashi, Hideki
Sato, Tadayuki
Damdinsuren, Anar
Onizuka, Makoto
Ito, Mamoru
Miyachi, Hayato
Pandolfi, Pier Paolo
Ando, Kiyoshi
Establishment of a Humanized APL Model via the Transplantation of PML-RARA-Transduced Human Common Myeloid Progenitors into Immunodeficient Mice
title Establishment of a Humanized APL Model via the Transplantation of PML-RARA-Transduced Human Common Myeloid Progenitors into Immunodeficient Mice
title_full Establishment of a Humanized APL Model via the Transplantation of PML-RARA-Transduced Human Common Myeloid Progenitors into Immunodeficient Mice
title_fullStr Establishment of a Humanized APL Model via the Transplantation of PML-RARA-Transduced Human Common Myeloid Progenitors into Immunodeficient Mice
title_full_unstemmed Establishment of a Humanized APL Model via the Transplantation of PML-RARA-Transduced Human Common Myeloid Progenitors into Immunodeficient Mice
title_short Establishment of a Humanized APL Model via the Transplantation of PML-RARA-Transduced Human Common Myeloid Progenitors into Immunodeficient Mice
title_sort establishment of a humanized apl model via the transplantation of pml-rara-transduced human common myeloid progenitors into immunodeficient mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4219701/
https://www.ncbi.nlm.nih.gov/pubmed/25369030
http://dx.doi.org/10.1371/journal.pone.0111082
work_keys_str_mv AT matsushitahiromichi establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice
AT yahatatakashi establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice
AT shengyin establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice
AT nakamurayoshihiko establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice
AT mugurumayukari establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice
AT matsuzawahideyuki establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice
AT tanakamasayuki establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice
AT hayashihideki establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice
AT satotadayuki establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice
AT damdinsurenanar establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice
AT onizukamakoto establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice
AT itomamoru establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice
AT miyachihayato establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice
AT pandolfipierpaolo establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice
AT andokiyoshi establishmentofahumanizedaplmodelviathetransplantationofpmlraratransducedhumancommonmyeloidprogenitorsintoimmunodeficientmice