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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 Parkinson’s disease 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.
Stem cells. --- Life sciences. --- Cell culture. --- Cultures (Biology) --- Cytology --- Biosciences --- Sciences, Life --- Science --- Colony-forming units (Cells) --- Mother cells --- Progenitor cells --- Cells --- Technique --- Developmental biology. --- Stem Cells. --- Cell Culture. --- Regenerative Medicine/Tissue Engineering. --- Developmental Biology. --- Development (Biology) --- Biology --- Growth --- Ontogeny --- Regenerative medicine. --- Tissue engineering. --- Biomedical engineering --- Regenerative medicine --- Tissue culture --- Medicine --- Regeneration (Biology)
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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 Parkinson’s disease 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.
General embryology. Developmental biology --- Histology. Cytology --- Biology --- Human histology. Human cytology --- stamcellen --- biologie --- cytologie --- embryologie (geneeskunde) --- stamceltransplantatie --- histologie --- celprocessen --- moleculaire biologie
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Christianity --- Christianity. --- Religion. --- China --- China.
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Detailed summary in vernacular field only.
S13B/0200 --- S13B/0414 --- China: Christianity--General works --- China: Christianity--Religious works and activities of SJ --- Ecclesiology --- China --- Cina --- Kinë --- Cathay --- Chinese National Government --- Chung-kuo kuo min cheng fu --- Republic of China (1912-1949) --- Kuo min cheng fu (China : 1912-1949) --- Chung-hua min kuo (1912-1949) --- Kina (China) --- National Government (1912-1949) --- China (Republic : 1912-1949) --- People's Republic of China --- Chinese People's Republic --- Chung-hua jen min kung ho kuo --- Central People's Government of Communist China --- Chung yang jen min cheng fu --- Chung-hua chung yang jen min kung ho kuo --- Central Government of the People's Republic of China --- Zhonghua Renmin Gongheguo --- Zhong hua ren min gong he guo --- Kitaĭskai︠a︡ Narodnai︠a︡ Respublika --- Činská lidová republika --- RRT --- Republik Rakjat Tiongkok --- KNR --- Kytaĭsʹka Narodna Respublika --- Jumhūriyat al-Ṣīn al-Shaʻbīyah --- RRC --- Kitaĭ --- Kínai Népköztársaság --- Chūka Jinmin Kyōwakoku --- Erets Sin --- Sin --- Sāthāranarat Prachāchon Čhīn --- P.R. China --- PR China --- Chung-kuo --- Zhongguo --- Zhonghuaminguo (1912-1949) --- Zhong guo --- Chine --- République Populaire de Chine --- República Popular China --- Catay --- VR China --- VRChina --- 中國 --- 中国 --- 中华人民共和国 --- Jhongguó --- Bu̇gu̇de Nayiramdaxu Dundadu Arad Ulus --- Bu̇gu̇de Nayiramdaqu Dumdadu Arad Ulus --- Bu̇gd Naĭramdakh Dundad Ard Uls --- Khi︠a︡tad --- Kitad --- Dumdadu Ulus --- Dumdad Uls --- Думдад Улс --- Kitajska --- China (Republic : 1949- ) --- Church history --- Christianity and culture --- History --- 21st century --- Congresses --- PRC --- P.R.C. --- BNKhAU --- БНХАУ
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