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Forming megakaryocytes from murine induced pluripotent stem cells by the inducible overexpression of supporting factors

BACKGROUND: Platelets are small anucleate cells that circulate in the blood in a resting state but can be activated by external cues. In case of need, platelets from blood donors can be transfused. As an alternative source, platelets can be produced from induced pluripotent stem cells (iPSCs); howev...

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Autores principales: Cullmann, Katharina, Jahn, Magdalena, Spindler, Markus, Schenk, Franziska, Manukjan, Georgi, Mucci, Adele, Steinemann, Doris, Boller, Klaus, Schulze, Harald, Bender, Markus, Moritz, Thomas, Modlich, Ute
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7845061/
https://www.ncbi.nlm.nih.gov/pubmed/33537535
http://dx.doi.org/10.1002/rth2.12453
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author Cullmann, Katharina
Jahn, Magdalena
Spindler, Markus
Schenk, Franziska
Manukjan, Georgi
Mucci, Adele
Steinemann, Doris
Boller, Klaus
Schulze, Harald
Bender, Markus
Moritz, Thomas
Modlich, Ute
author_facet Cullmann, Katharina
Jahn, Magdalena
Spindler, Markus
Schenk, Franziska
Manukjan, Georgi
Mucci, Adele
Steinemann, Doris
Boller, Klaus
Schulze, Harald
Bender, Markus
Moritz, Thomas
Modlich, Ute
author_sort Cullmann, Katharina
collection PubMed
description BACKGROUND: Platelets are small anucleate cells that circulate in the blood in a resting state but can be activated by external cues. In case of need, platelets from blood donors can be transfused. As an alternative source, platelets can be produced from induced pluripotent stem cells (iPSCs); however, recovered numbers are low. OBJECTIVES: To optimize megakaryocyte (MK) and platelet output from murine iPSCs, we investigated overexpression of the transcription factors GATA‐binding factor 1 (GATA1); nuclear factor, erythroid 2; and pre–B‐cell leukemia transcription factor 1 (Pbx1) and a hyperactive variant of the small guanosine triphosphatase RhoA (RhoAhc). METHODS: To avoid off‐target effects, we generated iPSCs carrying the reverse tetracycline‐responsive transactivator M2 (rtTA‐M2) in the Rosa26 locus and expressed the factors from Tet‐inducible gammaretroviral vectors. Differentiation of iPSCs was initiated by embryoid body (EB) formation. After EB dissociation, early hematopoietic progenitors were enriched and cocultivated on OP9 feeder cells with thrombopoietin and stem cell factor to induce megakaryocyte (MK) differentiation. RESULTS: Overexpression of GATA1 and Pbx1 increased MK output 2‐ to 2.5‐fold and allowed prolonged collection of MK. Cytologic and ultrastructural analyses identified typical MK with enlarged cells, multilobulated nuclei, granule structures, and an internal membrane system. However, GATA1 and Pbx1 expression did not improve MK maturation or platelet release, although in vitro–generated platelets were functional in spreading on fibrinogen or collagen‐related peptide. CONCLUSION: We demonstrate that the use of rtTA‐M2 transgenic iPSCs transduced with Tet‐inducible retroviral vectors allowed for gene expression at later time points during differentiation. With this strategy we could identify factors that increased in vitro MK production. [Image: see text]
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spelling pubmed-78450612021-02-02 Forming megakaryocytes from murine induced pluripotent stem cells by the inducible overexpression of supporting factors Cullmann, Katharina Jahn, Magdalena Spindler, Markus Schenk, Franziska Manukjan, Georgi Mucci, Adele Steinemann, Doris Boller, Klaus Schulze, Harald Bender, Markus Moritz, Thomas Modlich, Ute Res Pract Thromb Haemost Original Articles ‐ Hemostasis BACKGROUND: Platelets are small anucleate cells that circulate in the blood in a resting state but can be activated by external cues. In case of need, platelets from blood donors can be transfused. As an alternative source, platelets can be produced from induced pluripotent stem cells (iPSCs); however, recovered numbers are low. OBJECTIVES: To optimize megakaryocyte (MK) and platelet output from murine iPSCs, we investigated overexpression of the transcription factors GATA‐binding factor 1 (GATA1); nuclear factor, erythroid 2; and pre–B‐cell leukemia transcription factor 1 (Pbx1) and a hyperactive variant of the small guanosine triphosphatase RhoA (RhoAhc). METHODS: To avoid off‐target effects, we generated iPSCs carrying the reverse tetracycline‐responsive transactivator M2 (rtTA‐M2) in the Rosa26 locus and expressed the factors from Tet‐inducible gammaretroviral vectors. Differentiation of iPSCs was initiated by embryoid body (EB) formation. After EB dissociation, early hematopoietic progenitors were enriched and cocultivated on OP9 feeder cells with thrombopoietin and stem cell factor to induce megakaryocyte (MK) differentiation. RESULTS: Overexpression of GATA1 and Pbx1 increased MK output 2‐ to 2.5‐fold and allowed prolonged collection of MK. Cytologic and ultrastructural analyses identified typical MK with enlarged cells, multilobulated nuclei, granule structures, and an internal membrane system. However, GATA1 and Pbx1 expression did not improve MK maturation or platelet release, although in vitro–generated platelets were functional in spreading on fibrinogen or collagen‐related peptide. CONCLUSION: We demonstrate that the use of rtTA‐M2 transgenic iPSCs transduced with Tet‐inducible retroviral vectors allowed for gene expression at later time points during differentiation. With this strategy we could identify factors that increased in vitro MK production. [Image: see text] John Wiley and Sons Inc. 2020-12-03 /pmc/articles/PMC7845061/ /pubmed/33537535 http://dx.doi.org/10.1002/rth2.12453 Text en © 2020 The Authors. Research and Practice in Thrombosis and Haemostasis published by Wiley Periodicals LLC on behalf of International Society on Thrombosis and Haemostasis (ISTH). https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles ‐ Hemostasis
Cullmann, Katharina
Jahn, Magdalena
Spindler, Markus
Schenk, Franziska
Manukjan, Georgi
Mucci, Adele
Steinemann, Doris
Boller, Klaus
Schulze, Harald
Bender, Markus
Moritz, Thomas
Modlich, Ute
Forming megakaryocytes from murine induced pluripotent stem cells by the inducible overexpression of supporting factors
title Forming megakaryocytes from murine induced pluripotent stem cells by the inducible overexpression of supporting factors
title_full Forming megakaryocytes from murine induced pluripotent stem cells by the inducible overexpression of supporting factors
title_fullStr Forming megakaryocytes from murine induced pluripotent stem cells by the inducible overexpression of supporting factors
title_full_unstemmed Forming megakaryocytes from murine induced pluripotent stem cells by the inducible overexpression of supporting factors
title_short Forming megakaryocytes from murine induced pluripotent stem cells by the inducible overexpression of supporting factors
title_sort forming megakaryocytes from murine induced pluripotent stem cells by the inducible overexpression of supporting factors
topic Original Articles ‐ Hemostasis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7845061/
https://www.ncbi.nlm.nih.gov/pubmed/33537535
http://dx.doi.org/10.1002/rth2.12453
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