Induced pluripotent stem (iPS) cells from human fetal stem cells.

作者: Pascale V. Guillot

DOI: 10.1016/J.BPOBGYN.2015.08.007

关键词:

摘要: Pluripotency defines the ability of stem cells to differentiate into all lineages three germ layers and self-renew indefinitely. Somatic can regain developmental potential embryonic following ectopic expression a set transcription factors or, in certain circumstances, via modulation culture conditions supplementation with small molecule, that is, induced pluripotent (iPS) cells. Here, we discuss use fetal tissues for reprogramming, focusing particular on derived from human amniotic fluid, development chemical reprogramming. We next address advantages disadvantages deriving clinical applications.

参考文章(70)
Hongran Wang, Xiaohong Wang, Xueping Xu, Thomas P. Zwaka, Austin J. Cooney, Epigenetic reprogramming of the germ cell nuclear factor gene is required for proper differentiation of induced pluripotent cells. Stem Cells. ,vol. 31, pp. 2659- 2666 ,(2013) , 10.1002/STEM.1367
Jeong Beom Kim, Boris Greber, Marcos J. Araúzo-Bravo, Johann Meyer, Kook In Park, Holm Zaehres, Hans R. Schöler, Direct reprogramming of human neural stem cells by OCT4 Nature. ,vol. 461, pp. 649- 653 ,(2009) , 10.1038/NATURE08436
Viviane Tabar, Lorenz Studer, Pluripotent stem cells in regenerative medicine: challenges and recent progress Nature Reviews Genetics. ,vol. 15, pp. 82- 92 ,(2014) , 10.1038/NRG3563
Masato Nakagawa, Yukimasa Taniguchi, Sho Senda, Nanako Takizawa, Tomoko Ichisaka, Kanako Asano, Asuka Morizane, Daisuke Doi, Jun Takahashi, Masatoshi Nishizawa, Yoshinori Yoshida, Taro Toyoda, Kenji Osafune, Kiyotoshi Sekiguchi, Shinya Yamanaka, A novel efficient feeder-free culture system for the derivation of human induced pluripotent stem cells Scientific Reports. ,vol. 4, pp. 3594- 3594 ,(2015) , 10.1038/SREP03594
Chia-Wei Chang, Yi-Shin Lai, Kevin M. Pawlik, Kaimao Liu, Chiao-Wang Sun, Chao Li, Trenton R. Schoeb, Tim M. Townes, Polycistronic lentiviral vector for "hit and run" reprogramming of adult skin fibroblasts to induced pluripotent stem cells. Stem Cells. ,vol. 27, pp. 1042- 1049 ,(2009) , 10.1002/STEM.39
Eirini P Papapetrou, Gabsang Lee, Nirav Malani, Manu Setty, Isabelle Riviere, Laxmi M S Tirunagari, Kyuichi Kadota, Shoshannah L Roth, Patricia Giardina, Agnes Viale, Christina Leslie, Frederic D Bushman, Lorenz Studer, Michel Sadelain, Genomic safe harbors permit high β-globin transgene expression in thalassemia induced pluripotent stem cells Nature Biotechnology. ,vol. 29, pp. 73- 78 ,(2011) , 10.1038/NBT.1717
Armand Keating, Mesenchymal Stromal Cells: New Directions Cell Stem Cell. ,vol. 10, pp. 709- 716 ,(2012) , 10.1016/J.STEM.2012.05.015
Erin A. Kimbrel, Nicholas A. Kouris, Gregory J. Yavanian, Jianlin Chu, Yu Qin, Ann Chan, Ram P. Singh, Deborah McCurdy, Lynn Gordon, Ralph D. Levinson, Robert Lanza, Mesenchymal stem cell population derived from human pluripotent stem cells displays potent immunomodulatory and therapeutic properties. Stem Cells and Development. ,vol. 23, pp. 1611- 1624 ,(2014) , 10.1089/SCD.2013.0554
Maximilien Vanleene, Zahraa Saldanha, Kristy L. Cloyd, Gavin Jell, George Bou-Gharios, J. H. Duncan Bassett, Graham R. Williams, Nicholas M. Fisk, Michelle L. Oyen, Molly M. Stevens, Pascale V. Guillot, Sandra J. Shefelbine, Transplantation of human fetal blood stem cells in the osteogenesis imperfecta mouse leads to improvement in multiscale tissue properties Blood. ,vol. 117, pp. 1053- 1060 ,(2011) , 10.1182/BLOOD-2010-05-287565
Te Liu, Gang Zou, Yongtao Gao, Xinrong Zhao, Hui Wang, Qin Huang, Lizhen Jiang, Lihe Guo, Weiwei Cheng, High Efficiency of Reprogramming CD34+ Cells Derived from Human Amniotic Fluid into Induced Pluripotent Stem Cells with Oct4 Stem Cells and Development. ,vol. 21, pp. 2322- 2332 ,(2012) , 10.1089/SCD.2011.0715