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Robust and highly efficient hiPSC generation from patient non-mobilized peripheral blood-derived CD34(+) cells using the auto-erasable Sendai virus vector

BACKGROUND: Disease modeling with patient-derived induced pluripotent stem cells (iPSCs) is a powerful tool for elucidating the mechanisms underlying disease pathogenesis and developing safe and effective treatments. Patient peripheral blood (PB) cells are used for iPSC generation in many cases sinc...

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Autores principales: Okumura, Takashi, Horie, Yumi, Lai, Chen-Yi, Lin, Huan-Ting, Shoda, Hirofumi, Natsumoto, Bunki, Fujio, Keishi, Kumaki, Eri, Okano, Tsubasa, Ono, Shintaro, Tanita, Kay, Morio, Tomohiro, Kanegane, Hirokazu, Hasegawa, Hisanori, Mizoguchi, Fumitaka, Kawahata, Kimito, Kohsaka, Hitoshi, Moritake, Hiroshi, Nunoi, Hiroyuki, Waki, Hironori, Tamaru, Shin-ichi, Sasako, Takayoshi, Yamauchi, Toshimasa, Kadowaki, Takashi, Tanaka, Hiroyuki, Kitanaka, Sachiko, Nishimura, Ken, Ohtaka, Manami, Nakanishi, Mahito, Otsu, Makoto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6591940/
https://www.ncbi.nlm.nih.gov/pubmed/31234949
http://dx.doi.org/10.1186/s13287-019-1273-2
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author Okumura, Takashi
Horie, Yumi
Lai, Chen-Yi
Lin, Huan-Ting
Shoda, Hirofumi
Natsumoto, Bunki
Fujio, Keishi
Kumaki, Eri
Okano, Tsubasa
Ono, Shintaro
Tanita, Kay
Morio, Tomohiro
Kanegane, Hirokazu
Hasegawa, Hisanori
Mizoguchi, Fumitaka
Kawahata, Kimito
Kohsaka, Hitoshi
Moritake, Hiroshi
Nunoi, Hiroyuki
Waki, Hironori
Tamaru, Shin-ichi
Sasako, Takayoshi
Yamauchi, Toshimasa
Kadowaki, Takashi
Tanaka, Hiroyuki
Kitanaka, Sachiko
Nishimura, Ken
Ohtaka, Manami
Nakanishi, Mahito
Otsu, Makoto
author_facet Okumura, Takashi
Horie, Yumi
Lai, Chen-Yi
Lin, Huan-Ting
Shoda, Hirofumi
Natsumoto, Bunki
Fujio, Keishi
Kumaki, Eri
Okano, Tsubasa
Ono, Shintaro
Tanita, Kay
Morio, Tomohiro
Kanegane, Hirokazu
Hasegawa, Hisanori
Mizoguchi, Fumitaka
Kawahata, Kimito
Kohsaka, Hitoshi
Moritake, Hiroshi
Nunoi, Hiroyuki
Waki, Hironori
Tamaru, Shin-ichi
Sasako, Takayoshi
Yamauchi, Toshimasa
Kadowaki, Takashi
Tanaka, Hiroyuki
Kitanaka, Sachiko
Nishimura, Ken
Ohtaka, Manami
Nakanishi, Mahito
Otsu, Makoto
author_sort Okumura, Takashi
collection PubMed
description BACKGROUND: Disease modeling with patient-derived induced pluripotent stem cells (iPSCs) is a powerful tool for elucidating the mechanisms underlying disease pathogenesis and developing safe and effective treatments. Patient peripheral blood (PB) cells are used for iPSC generation in many cases since they can be collected with minimum invasiveness. To derive iPSCs that lack immunoreceptor gene rearrangements, hematopoietic stem and progenitor cells (HSPCs) are often targeted as the reprogramming source. However, the current protocols generally require HSPC mobilization and/or ex vivo expansion owing to their sparsity at the steady state and low reprogramming efficiencies, making the overall procedure costly, laborious, and time-consuming. METHODS: We have established a highly efficient method for generating iPSCs from non-mobilized PB-derived CD34(+) HSPCs. The source PB mononuclear cells were obtained from 1 healthy donor and 15 patients and were kept frozen until the scheduled iPSC generation. CD34(+) HSPC enrichment was done using immunomagnetic beads, with no ex vivo expansion culture. To reprogram the CD34(+)-rich cells to pluripotency, the Sendai virus vector SeVdp-302L was used to transfer four transcription factors: KLF4, OCT4, SOX2, and c-MYC. In this iPSC generation series, the reprogramming efficiencies, success rates of iPSC line establishment, and progression time were recorded. After generating the iPSC frozen stocks, the cell recovery and their residual transgenes, karyotypes, T cell receptor gene rearrangement, pluripotency markers, and differentiation capability were examined. RESULTS: We succeeded in establishing 223 iPSC lines with high reprogramming efficiencies from 15 patients with 8 different disease types. Our method allowed the rapid appearance of primary colonies (~ 8 days), all of which were expandable under feeder-free conditions, enabling robust establishment steps with less workload. After thawing, the established iPSC lines were verified to be pluripotency marker-positive and of non-T cell origin. A majority of the iPSC lines were confirmed to be transgene-free, with normal karyotypes. Their trilineage differentiation capability was also verified in a defined in vitro assay. CONCLUSION: This robust and highly efficient method enables the rapid and cost-effective establishment of transgene-free iPSC lines from a small volume of PB, thus facilitating the biobanking of patient-derived iPSCs and their use for the modeling of various diseases. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13287-019-1273-2) contains supplementary material, which is available to authorized users.
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spelling pubmed-65919402019-07-08 Robust and highly efficient hiPSC generation from patient non-mobilized peripheral blood-derived CD34(+) cells using the auto-erasable Sendai virus vector Okumura, Takashi Horie, Yumi Lai, Chen-Yi Lin, Huan-Ting Shoda, Hirofumi Natsumoto, Bunki Fujio, Keishi Kumaki, Eri Okano, Tsubasa Ono, Shintaro Tanita, Kay Morio, Tomohiro Kanegane, Hirokazu Hasegawa, Hisanori Mizoguchi, Fumitaka Kawahata, Kimito Kohsaka, Hitoshi Moritake, Hiroshi Nunoi, Hiroyuki Waki, Hironori Tamaru, Shin-ichi Sasako, Takayoshi Yamauchi, Toshimasa Kadowaki, Takashi Tanaka, Hiroyuki Kitanaka, Sachiko Nishimura, Ken Ohtaka, Manami Nakanishi, Mahito Otsu, Makoto Stem Cell Res Ther Research BACKGROUND: Disease modeling with patient-derived induced pluripotent stem cells (iPSCs) is a powerful tool for elucidating the mechanisms underlying disease pathogenesis and developing safe and effective treatments. Patient peripheral blood (PB) cells are used for iPSC generation in many cases since they can be collected with minimum invasiveness. To derive iPSCs that lack immunoreceptor gene rearrangements, hematopoietic stem and progenitor cells (HSPCs) are often targeted as the reprogramming source. However, the current protocols generally require HSPC mobilization and/or ex vivo expansion owing to their sparsity at the steady state and low reprogramming efficiencies, making the overall procedure costly, laborious, and time-consuming. METHODS: We have established a highly efficient method for generating iPSCs from non-mobilized PB-derived CD34(+) HSPCs. The source PB mononuclear cells were obtained from 1 healthy donor and 15 patients and were kept frozen until the scheduled iPSC generation. CD34(+) HSPC enrichment was done using immunomagnetic beads, with no ex vivo expansion culture. To reprogram the CD34(+)-rich cells to pluripotency, the Sendai virus vector SeVdp-302L was used to transfer four transcription factors: KLF4, OCT4, SOX2, and c-MYC. In this iPSC generation series, the reprogramming efficiencies, success rates of iPSC line establishment, and progression time were recorded. After generating the iPSC frozen stocks, the cell recovery and their residual transgenes, karyotypes, T cell receptor gene rearrangement, pluripotency markers, and differentiation capability were examined. RESULTS: We succeeded in establishing 223 iPSC lines with high reprogramming efficiencies from 15 patients with 8 different disease types. Our method allowed the rapid appearance of primary colonies (~ 8 days), all of which were expandable under feeder-free conditions, enabling robust establishment steps with less workload. After thawing, the established iPSC lines were verified to be pluripotency marker-positive and of non-T cell origin. A majority of the iPSC lines were confirmed to be transgene-free, with normal karyotypes. Their trilineage differentiation capability was also verified in a defined in vitro assay. CONCLUSION: This robust and highly efficient method enables the rapid and cost-effective establishment of transgene-free iPSC lines from a small volume of PB, thus facilitating the biobanking of patient-derived iPSCs and their use for the modeling of various diseases. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13287-019-1273-2) contains supplementary material, which is available to authorized users. BioMed Central 2019-06-24 /pmc/articles/PMC6591940/ /pubmed/31234949 http://dx.doi.org/10.1186/s13287-019-1273-2 Text en © The Author(s). 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Okumura, Takashi
Horie, Yumi
Lai, Chen-Yi
Lin, Huan-Ting
Shoda, Hirofumi
Natsumoto, Bunki
Fujio, Keishi
Kumaki, Eri
Okano, Tsubasa
Ono, Shintaro
Tanita, Kay
Morio, Tomohiro
Kanegane, Hirokazu
Hasegawa, Hisanori
Mizoguchi, Fumitaka
Kawahata, Kimito
Kohsaka, Hitoshi
Moritake, Hiroshi
Nunoi, Hiroyuki
Waki, Hironori
Tamaru, Shin-ichi
Sasako, Takayoshi
Yamauchi, Toshimasa
Kadowaki, Takashi
Tanaka, Hiroyuki
Kitanaka, Sachiko
Nishimura, Ken
Ohtaka, Manami
Nakanishi, Mahito
Otsu, Makoto
Robust and highly efficient hiPSC generation from patient non-mobilized peripheral blood-derived CD34(+) cells using the auto-erasable Sendai virus vector
title Robust and highly efficient hiPSC generation from patient non-mobilized peripheral blood-derived CD34(+) cells using the auto-erasable Sendai virus vector
title_full Robust and highly efficient hiPSC generation from patient non-mobilized peripheral blood-derived CD34(+) cells using the auto-erasable Sendai virus vector
title_fullStr Robust and highly efficient hiPSC generation from patient non-mobilized peripheral blood-derived CD34(+) cells using the auto-erasable Sendai virus vector
title_full_unstemmed Robust and highly efficient hiPSC generation from patient non-mobilized peripheral blood-derived CD34(+) cells using the auto-erasable Sendai virus vector
title_short Robust and highly efficient hiPSC generation from patient non-mobilized peripheral blood-derived CD34(+) cells using the auto-erasable Sendai virus vector
title_sort robust and highly efficient hipsc generation from patient non-mobilized peripheral blood-derived cd34(+) cells using the auto-erasable sendai virus vector
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6591940/
https://www.ncbi.nlm.nih.gov/pubmed/31234949
http://dx.doi.org/10.1186/s13287-019-1273-2
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