Studies of Pluripotency in Embryonic Stem Cells and Induced Pluripotent Stem Cells / by Xiaoyang Zhao.
By: Zhao, Xiaoyang.
Material type:
E-bookSeries: (Springer Theses, Recognizing Outstanding Ph.D. Research, 2190-5053).Publisher: Dordrecht, Netherlands : Springer International Publishing, 2014Description: 1 recurso en línea (XV, 92 p.) : 21 ilustraciones, 18 ilustraciones en color.ISBN: 9789401788199.Subject: Células madre
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Madrid Digital Acceso Electrónico (UEM) | Ciencias de la Salud | QH588.S83 Z436 2014 EB (Browse shelf(Opens below)) | .i11554770 | Acceso electrónico | eBOOK .i11554770 |
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| QH588.S83 U475 2016 EB Working with Stem Cells | QH588.S83 W638 2006 EB Stem Cells | QH588.S83 Y553 2013 EB Dental Pulp Stem Cells | QH588.S83 Z436 2014 EB Studies of Pluripotency in Embryonic Stem Cells and Induced Pluripotent Stem Cells | QH591 2018 EB Nuclear-Cytoplasmic Transport | QH595 2008 EB The Nucleus Volume 1, Nuclei and Subnuclear Components | QH595 2015 EB The Nucleus |
Abstract -- Introduction -- Establishment of highly efficient somatic cell reprogramming system to generate iPSC lines- Establishment of highly efficient somatic cell reprogramming system and establishment of iPSC lines -- Pluripotency of iPSC and underlining mechanism -- Developmental potential of mouse iPSC -- Conclusions.
Stem cells have the ability to differentiate into all types of cells within the body, thus have great therapeutic potential for regenerative medicine to treat complicated disorders, like Parkinsonâ€{u3824}isease and spinal cord injury. There will also be many applications in drug development. However, several roadblocks, such as safety issues and low efficiency of pluripotent stem cell (PSC) line derivation need to be resolved before their clinical application. This thesis focuses on these two areas, so as to find methods to overcome the limitation. It covers deriving embryonic stem cells (ESCs) from several different species, and reports an efficient system to generate induced pluripotent stem cells (iPSCs), and the first iPSC mice in the world. The results in this thesis confirm that somatic cells can be fully reprogrammed with the four Yamanaka factors. In addition, we have found that the Dlk1-Dio3 region can be a potential molecular marker to distinguish the fully reprogrammed iPSCs from partially reprogrammed ones. All of these results will help improve the safety of PSCs in the clinical applications, and increase the current low induction efficiency of their production.
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