نتایج جستجو برای: cellular reprogramming

تعداد نتایج: 449138  

2017
Scott Ronquist Geoff Patterson Lindsey A Muir Stephen Lindsly Haiming Chen Markus Brown Max S Wicha Anthony Bloch Roger Brockett Indika Rajapakse

The day we understand the time evolution of subcellular events at a level of detail comparable to physical systems governed by Newton's laws of motion seems far away. Even so, quantitative approaches to cellular dynamics add to our understanding of cell biology. With data-guided frameworks we can develop better predictions about, and methods for, control over specific biological processes and s...

Journal: :Physical review research 2022

The authors present a theoretical mechanism for cellular reprogramming and show that global attraction to the initial unstable pluripotent-state is achieved only by manipulating expression of few genes.

Hoda Mollaei Mohammad Khalaj-kondori

The use of animal models in modeling of human genetic disease has many advantages. In some cases, however, this method may not be applicable due to some limitations, such as differences in tissue composition, anatomy and physiology of humans and animals. Isogenic human disease models are a population of cells that are selected or engineered to model a specific genetic disease, in vitro. They ar...

2017
Seo-Young Lee Hye Bin Noh Hyeong-Taek Kim Kang-In Lee Dong-Youn Hwang

The ground-breaking discovery of the reprogramming of somatic cells into pluripotent cells, termed induced pluripotent stem cells (iPSCs), was accomplished by delivering 4 transcription factors, Oct4, Sox2, Klf4, and c-Myc, into fibroblasts. Since then, several efforts have attempted to unveil other factors that are directly implicated in or might enhance reprogramming. Importantly, a number of...

Journal: :Cell 2014
Han Qin Aaron Diaz Laure Blouin Robert Jan Lebbink Weronika Patena Priscilia Tanbun Emily M. LeProust Michael T. McManus Jun S. Song Miguel Ramalho-Santos

Reprogramming of somatic cells to induced pluripotent stem cells (iPSCs) holds enormous promise for regenerative medicine. To elucidate endogenous barriers limiting this process, we systematically dissected human cellular reprogramming by combining a genome-wide RNAi screen, innovative computational methods, extensive single-hit validation, and mechanistic investigation of relevant pathways and...

Journal: :Cell 2016
Deepak Srivastava Natalie DeWitt

Cellular reprogramming technology has created new opportunities in understanding human disease, drug discovery, and regenerative medicine. While a combinatorial code was initially found to reprogram somatic cells to pluripotency, a "second generation" of cellular reprogramming involves lineage-restricted transcription factors and microRNAs that directly reprogram one somatic cell to another. Th...

2015
Zhenhua Yang Jonathan Augustin Jing Hu Hao Jiang Wei Xu

Differentiated cells can be reprogrammed to the pluripotent state by overexpression of defined factors, and this process is profoundly influenced by epigenetic mechanisms including dynamic histone modifications. Changes in H3K4 methylation have been shown to be the predominant activating response in the early stage of cellular reprogramming. Mechanisms underlying such epigenetic priming, howeve...

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