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Efficient Generation of Integration-Free iPS Cells from Human Adult Peripheral Blood Using BCL-XL Together with Yamanaka Factors

The ability to efficiently generate integration-free induced pluripotent stem cells (iPSCs) from the most readily available source—peripheral blood—has the potential to expedite the advances of iPSC-based therapies. We have successfully generated integration-free iPSCs from cord blood (CB) CD34(+) c...

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Autores principales: Su, Rui-Jun, Baylink, David J., Neises, Amanda, Kiroyan, Jason B., Meng, Xianmei, Payne, Kimberly J., Tschudy-Seney, Benjamin, Duan, Yuyou, Appleby, Nancy, Kearns-Jonker, Mary, Gridley, Daila S., Wang, Jun, Lau, K-H. William, Zhang, Xiao-Bing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3660366/
https://www.ncbi.nlm.nih.gov/pubmed/23704989
http://dx.doi.org/10.1371/journal.pone.0064496
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author Su, Rui-Jun
Baylink, David J.
Neises, Amanda
Kiroyan, Jason B.
Meng, Xianmei
Payne, Kimberly J.
Tschudy-Seney, Benjamin
Duan, Yuyou
Appleby, Nancy
Kearns-Jonker, Mary
Gridley, Daila S.
Wang, Jun
Lau, K-H. William
Zhang, Xiao-Bing
author_facet Su, Rui-Jun
Baylink, David J.
Neises, Amanda
Kiroyan, Jason B.
Meng, Xianmei
Payne, Kimberly J.
Tschudy-Seney, Benjamin
Duan, Yuyou
Appleby, Nancy
Kearns-Jonker, Mary
Gridley, Daila S.
Wang, Jun
Lau, K-H. William
Zhang, Xiao-Bing
author_sort Su, Rui-Jun
collection PubMed
description The ability to efficiently generate integration-free induced pluripotent stem cells (iPSCs) from the most readily available source—peripheral blood—has the potential to expedite the advances of iPSC-based therapies. We have successfully generated integration-free iPSCs from cord blood (CB) CD34(+) cells with improved oriP/EBNA1-based episomal vectors (EV) using a strong spleen focus forming virus (SFFV) long terminal repeat (LTR) promoter. Here we show that Yamanaka factors (OCT4, SOX2, MYC, and KLF4)-expressing EV can also reprogram adult peripheral blood mononuclear cells (PBMNCs) into pluripotency, yet at a very low efficiency. We found that inclusion of BCL-XL increases the reprogramming efficiency by approximately 10-fold. Furthermore, culture of CD3(−)/CD19(−) cells or T/B cell-depleted MNCs for 4–6 days led to the generation of 20–30 iPSC colonies from 1 ml PB, an efficiency that is substantially higher than previously reported. PB iPSCs express pluripotency markers, form teratomas, and can be induced to differentiate in vitro into mesenchymal stem cells, cardiomyocytes, and hepatocytes. Used together, our optimized factor combination and reprogramming strategy lead to efficient generation of integration-free iPSCs from adult PB. This discovery has potential applications in iPSC banking, disease modeling and regenerative medicine.
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spelling pubmed-36603662013-05-23 Efficient Generation of Integration-Free iPS Cells from Human Adult Peripheral Blood Using BCL-XL Together with Yamanaka Factors Su, Rui-Jun Baylink, David J. Neises, Amanda Kiroyan, Jason B. Meng, Xianmei Payne, Kimberly J. Tschudy-Seney, Benjamin Duan, Yuyou Appleby, Nancy Kearns-Jonker, Mary Gridley, Daila S. Wang, Jun Lau, K-H. William Zhang, Xiao-Bing PLoS One Research Article The ability to efficiently generate integration-free induced pluripotent stem cells (iPSCs) from the most readily available source—peripheral blood—has the potential to expedite the advances of iPSC-based therapies. We have successfully generated integration-free iPSCs from cord blood (CB) CD34(+) cells with improved oriP/EBNA1-based episomal vectors (EV) using a strong spleen focus forming virus (SFFV) long terminal repeat (LTR) promoter. Here we show that Yamanaka factors (OCT4, SOX2, MYC, and KLF4)-expressing EV can also reprogram adult peripheral blood mononuclear cells (PBMNCs) into pluripotency, yet at a very low efficiency. We found that inclusion of BCL-XL increases the reprogramming efficiency by approximately 10-fold. Furthermore, culture of CD3(−)/CD19(−) cells or T/B cell-depleted MNCs for 4–6 days led to the generation of 20–30 iPSC colonies from 1 ml PB, an efficiency that is substantially higher than previously reported. PB iPSCs express pluripotency markers, form teratomas, and can be induced to differentiate in vitro into mesenchymal stem cells, cardiomyocytes, and hepatocytes. Used together, our optimized factor combination and reprogramming strategy lead to efficient generation of integration-free iPSCs from adult PB. This discovery has potential applications in iPSC banking, disease modeling and regenerative medicine. Public Library of Science 2013-05-21 /pmc/articles/PMC3660366/ /pubmed/23704989 http://dx.doi.org/10.1371/journal.pone.0064496 Text en © 2013 Su 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
Su, Rui-Jun
Baylink, David J.
Neises, Amanda
Kiroyan, Jason B.
Meng, Xianmei
Payne, Kimberly J.
Tschudy-Seney, Benjamin
Duan, Yuyou
Appleby, Nancy
Kearns-Jonker, Mary
Gridley, Daila S.
Wang, Jun
Lau, K-H. William
Zhang, Xiao-Bing
Efficient Generation of Integration-Free iPS Cells from Human Adult Peripheral Blood Using BCL-XL Together with Yamanaka Factors
title Efficient Generation of Integration-Free iPS Cells from Human Adult Peripheral Blood Using BCL-XL Together with Yamanaka Factors
title_full Efficient Generation of Integration-Free iPS Cells from Human Adult Peripheral Blood Using BCL-XL Together with Yamanaka Factors
title_fullStr Efficient Generation of Integration-Free iPS Cells from Human Adult Peripheral Blood Using BCL-XL Together with Yamanaka Factors
title_full_unstemmed Efficient Generation of Integration-Free iPS Cells from Human Adult Peripheral Blood Using BCL-XL Together with Yamanaka Factors
title_short Efficient Generation of Integration-Free iPS Cells from Human Adult Peripheral Blood Using BCL-XL Together with Yamanaka Factors
title_sort efficient generation of integration-free ips cells from human adult peripheral blood using bcl-xl together with yamanaka factors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3660366/
https://www.ncbi.nlm.nih.gov/pubmed/23704989
http://dx.doi.org/10.1371/journal.pone.0064496
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