نتایج جستجو برای: reprogramming

تعداد نتایج: 12767  

2017
Eva Hörmanseder Angela Simeone George E. Allen Charles R. Bradshaw Magdalena Figlmüller John Gurdon Jerome Jullien

Vertebrate eggs can induce the nuclear reprogramming of somatic cells to enable production of cloned animals. Nuclear reprogramming is relatively inefficient, and the development of the resultant embryos is frequently compromised, in part due to the inappropriate expression of genes previously active in the donor nucleus. Here, we identify H3K4 methylation as a major epigenetic roadblock that l...

2017
Junhui An Yu Zheng Christina Tenenhaus Dann

Cultured spermatogonial stem cells (GSCs) can spontaneously form pluripotent cells in certain culture conditions. However, GSC reprogramming is a rare event that is largely unexplained. We show GSCs have high expression of mesenchymal to epithelial transition (MET) suppressors resulting in a developmental barrier inhibiting GSC reprogramming. Either increasing OCT4 or repressing transforming gr...

2014
Juli J. Unternaehrer Rui Zhao Kitai Kim Marcella Cesana John T. Powers Sutheera Ratanasirintrawoot Tamer Onder Tsukasa Shibue Robert A. Weinberg George Q. Daley

Reprogramming of fibroblasts to induced pluripotent stem cells (iPSCs) entails a mesenchymal to epithelial transition (MET). While attempting to dissect the mechanism of MET during reprogramming, we observed that knockdown (KD) of the epithelial-to-mesenchymal transition (EMT) factor SNAI1 (SNAIL) paradoxically reduced, while overexpression enhanced, reprogramming efficiency in human cells and ...

2016
Yanzhen Li Sophie Dal-Pra Maria Mirotsou Tilanthi M. Jayawardena Conrad P. Hodgkinson Nenad Bursac Victor J. Dzau

We have recently shown that a combination of microRNAs, miR combo, can directly reprogram cardiac fibroblasts into functional cardiomyocytes in vitro and in vivo. Reprogramming of cardiac fibroblasts by miR combo in vivo is associated with improved cardiac function following myocardial infarction. However, the efficiency of direct reprogramming in vitro is relatively modest and new strategies b...

2015
Ming-Wai Poon Jia He Xiaowei Fang Zhao Zhang Weixin Wang Junwen Wang Fangfang Qiu Hung-Fat Tse Wei Li Zuguo Liu Qizhou Lian Joseph Najbauer

A variety of pluripotency reprogramming frequencies from different somatic cells has been observed, indicating cell origin is a critical contributor for efficiency of pluripotency reprogramming. Identifying the cell sources for efficient induced pluripotent stem cells (iPSCs) generation, and defining its advantages or disadvantages on reprogramming, is therefore important. Human ocular tissue-d...

2017
Tomohiko C. Umei Hiroyuki Yamakawa Naoto Muraoka Taketaro Sadahiro Mari Isomi Sho Haginiwa Hidenori Kojima Shota Kurotsu Fumiya Tamura Rina Osakabe Hidenori Tani Kaori Nara Hiroyuki Miyoshi Keiichi Fukuda Masaki Ieda

Direct reprogramming is a promising approach in regenerative medicine. Overexpression of the cardiac transcription factors Gata4, Mef2c, and Tbx5 (GMT) or GMT plus Hand2 (GHMT) directly reprogram fibroblasts into cardiomyocyte-like cells (iCMs). However, the critical timing of transgene expression and the molecular mechanisms for cardiac reprogramming remain unclear. The conventional doxycyclin...

Journal: :Journal of cell science 2014
Yong Tang Zongliang Jiang Yan Luo Xueming Zhao Ling Wang Carol Norris Xiuchun Cindy Tian

Akt plays an important role in cell growth, proliferation and survival. The specific roles of the three Akt isoforms in somatic cell reprogramming have not been investigated. Here we report that, during iPSC generation, enhanced Akt1 activity promotes complete reprogramming mainly through increased activation of Stat3 in concert with leukemia inhibitory factor (LIF) and, to a lesser extent, thr...

Journal: :The International journal of developmental biology 2015
Fei Han Xia Li Dandan Song Shaoshuai Jiang Qun Xu Yunhai Zhang

Somatic cell nuclear transplantation (SCNT) and induced pluripotent stem cell (iPSC) technologies can be employed to change cell fate by reprogramming. The discoveries of SCNT and iPSCs were awarded the Nobel Prize for Physiology and Medicine in 2012, which reaffirmed the importance of cell fate plasticity. However, the low cloning efficiency of SCNT and differences between iPSCs and embryonic ...

Journal: :Current Biology 2004
Christoph Hansis Guillermo Barreto Nicole Maltry Christof Niehrs

Animal cloning by nuclear transplantation in amphibia was demonstrated almost half a century ago and raised the question of the mechanisms and genes involved in nuclear reprogramming. Here, we demonstrate nuclear reprogramming of permeabilized human cells using extracts from Xenopus laevis eggs and early embryos. We show upregulation of pluripotency markers Oct-4 and germ cell alkaline phosphat...

2014
Ying Dai Yonglong Guo Chan Wang Qing Liu Yan Yang Shanyi Li Xiaoling Guo Ruiling Lian Rongjie Yu Hongwei Liu Jiansu Chen Irina Kerkis

Cell fate and function can be regulated and reprogrammed by intrinsic genetic program, extrinsic factors and niche microenvironment. Direct reprogramming has shown many advantages in the field of cellular reprogramming. Here we tried the possibility to generate corneal endothelia (CE) -like cells from human adipose-derived stem cells (ADSCs) by the non-genetic direct reprogramming of recombinan...

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