نتایج جستجو برای: mouse somatic cell nuclear transfer

تعداد نتایج: 2294906  

Journal: :Cell 2007
Holm Zaehres Hans R. Schöler

In this issue of Cell, Takahashi et al. (2007) transfer their seminal work on somatic cell reprogramming from the mouse to human. By overexpressing the transcription factor quartet of Oct4, Sox2, Klf4, and c-Myc in adult human fibroblasts, they successfully isolate human pluripotent stem cells that resemble human embryonic stem cells by all measured criteria. This is a significant turning point...

Journal: :Journal of cell science 2003
Pedro N Moreira James M Robl Philippe Collas

Reprogramming somatic nuclear function by transplantation of nuclei into recipient oocytes is associated with a morphological remodeling of the somatic nucleus. Successful cloning of animals by nuclear transplantation (NT) demonstrates that reprogramming somatic cell function is possible. However, low pregnancy rates and high frequencies of lethal abnormalities in animals born suggest that repr...

2009
Hiromi Kato Masayuki Anzai Tasuku Mitani Masahiro Morita Yui Nishiyama Akemi Nakao Kenji Kondo Petr A. Lazarev Tsuyoshi Ohtani Yasuyuki Shibata Akira Iritani

Here, we report the recovery of cell nuclei from 14,000-15,000 years old mammoth tissues and the injection of those nuclei into mouse enucleated matured oocytes by somatic cell nuclear transfer (SCNT). From both skin and muscle tissues, cell nucleus-like structures were successfully recovered. Those nuclei were then injected into enucleated oocytes and more than half of the oocytes were able to...

2017
Hui Li Shuai Gao Hua Huang Wenqiang Liu Huanwei Huang Xiaoyu Liu Yawei Gao Rongrong Le Xiaochen Kou Yanhong Zhao Zhaohui Kou Jia Li Hong Wang Yu Zhang Hailin Wang Tao Cai Qingyuan Sun Shaorong Gao Zhiming Han

Somatic cell nuclear transfer and transcription factor mediated reprogramming are two widely used techniques for somatic cell reprogramming. Both fully reprogrammed nuclear transfer embryonic stem cells and induced pluripotent stem cells hold potential for regenerative medicine, and evaluation of the stem cell pluripotency state is crucial for these applications. Previous reports have shown tha...

Journal: :Cell 2014
Shogo Matoba Yuting Liu Falong Lu Kumiko A. Iwabuchi Li Shen Azusa Inoue Yi Zhang

Mammalian oocytes can reprogram somatic cells into a totipotent state enabling animal cloning through somatic cell nuclear transfer (SCNT). However, the majority of SCNT embryos fail to develop to term due to undefined reprogramming defects. Here, we identify histone H3 lysine 9 trimethylation (H3K9me3) of donor cell genome as a major barrier for efficient reprogramming by SCNT. Comparative tra...

2014
Yu Ren Haiqing Wu Yuzhen Ma Jianlong Yuan Hao Liang Dongjun Liu

Somatic cell nuclear transfer is used to generate genetic models for research and new, genetically modified livestock varieties. Goat fetal fibroblast cells (gFFCs) are the predominant nuclear donors in Cashmere goat transgenic cloning, but have disadvantages. We evaluated the potential of goat adipose-derived mesenchymal stem cells (gADSCs) and goat skeletal muscle-derived satellite cells (gMD...

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