نتایج جستجو برای: oocyte mediated reprogramming

تعداد نتایج: 433059  

2017
Jingcheng Zhang Pengxiang Qu Chuan Zhou Xin Liu Xiaonan Ma Mengyun Wang Yongsheng Wang Jianmin Su Jun Liu Yong Zhang

Somatic cell nuclear transfer (SCNT)-mediated reprogramming is a rapid, efficient, and sophisticated process that reprograms differentiated somatic cells to a pluripotent state. However, many factors in this elaborate reprogramming process remain largely unknown. Here, we report that the microRNA (miR) miR-125b is an important component of SCNT-mediated reprogramming. Luciferase reporter assay,...

Journal: :Development 2009
Konrad Hochedlinger Kathrin Plath

The cloning of animals from adult cells has demonstrated that the developmental state of adult cells can be reprogrammed into that of embryonic cells by uncharacterized factors within the oocyte. More recently, transcription factors have been identified that can induce pluripotency in somatic cells without the use of oocytes, generating induced pluripotent stem (iPS) cells. iPS cells provide a ...

2012
Nathalie Swales Geert A. Martens Stefan Bonné Yves Heremans Rehannah Borup Mark Van de Casteele Zhidong Ling Daniel Pipeleers Philippe Ravassard Finn Nielsen Jorge Ferrer Harry Heimberg

AIMS/HYPOTHESIS Duct cells isolated from adult human pancreas can be reprogrammed to express islet beta cell genes by adenoviral transduction of the developmental transcription factor neurogenin3 (Ngn3). In this study we aimed to fully characterize the extent of this reprogramming and intended to improve it. METHODS The extent of the Ngn3-mediated duct-to-endocrine cell reprogramming was meas...

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...

2017
Fujia WU Li TAO Shuai GAO Likun REN Zhuqing WANG Shumin WANG Jianhui TIAN Lei AN

Global DNA hypomethylation has been shown to be involved in the pluripotency of induced pluripotent stem (iPS) cells. Relatedly, DNA methyltransferases (DNMTs) are believed to be a substantial barrier to genome-wide demethylation. There are two distinct stages of DNMT expression during iPS cell generation. In the earlier stage of reprogramming, the expression of DNMTs is repressed to overcome e...

Journal: :Stem cells 2010
Taotao Chen Detian Yuan Bin Wei Jing Jiang Jiuhong Kang Kun Ling Yijun Gu Jinsong Li Lei Xiao Gang Pei

The low efficiency of reprogramming and genomic integration of virus vectors obscure the potential application of induced pluripotent stem (iPS) cells; therefore, identification of chemicals and cooperative factors that may improve the generation of iPS cells will be of great value. Moreover, the cellular mechanisms that limit the reprogramming efficiency need to be investigated. Through screen...

Journal: :Proceedings for Annual Meeting of The Japanese Pharmacological Society 2018

2017
Emre Bektik Adrienne Dennis Prateek Prasanna Anant Madabhushi Ji-Dong Fu

The direct reprogramming of cardiac fibroblasts into induced cardiomyocyte (CM)-like cells (iCMs) holds great promise in restoring heart function. We previously found that human fibroblasts could be reprogrammed toward CM-like cells by 7 reprogramming factors; however, iCM reprogramming in human fibroblasts is both more difficult and more time-intensive than that in mouse cells. In this study, ...

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