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相关概念视频

Maintenance of the ES Cell State01:14

Maintenance of the ES Cell State

The cells of the blastocyst inner cell mass only remain pluripotent for a short time. This state of pluripotency and self-renewal can be maintained in embryonic stem (ES) cell culture by adding specific chemicals or growth factors to ensure the cells can continue dividing and later differentiate into different cell types. In some cases, the cells are grown on a feeder layer of differentiated cells, which provides the growth factors and extracellular matrix components necessary for stem cell...
EPS and iPS Cells in Disease Research01:21

EPS and iPS Cells in Disease Research

Embryonic and induced pluripotent stem cells are excellent models for disease research because of their ability to self-renew and differentiate into most cell types. Somatic cells from a patient are isolated and reprogrammed into induced pluripotent stem cells or iPSCs. These iPSCs are later differentiated into the desired cell type, which mirrors the diseased cell of the patient. In this way, disease models have been created for investigating diseases such as Down syndrome, type I diabetes,...
Induced Pluripotent Stem Cells01:13

Induced Pluripotent Stem Cells

Stem cells are undifferentiated cells that divide and produce different types of cells. Ordinarily, cells that have differentiated into a specific cell type are post-mitotic—that is, they no longer divide. However, scientists have found a way to reprogram these mature cells so that they “de-differentiate” and return to an unspecialized, proliferative state. These cells are also pluripotent like embryonic stem cells—able to produce all cell types—and are therefore called induced pluripotent stem...

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Generation of Induced Pluripotent Stem Cells by Reprogramming Mouse Embryonic Fibroblasts with a Four Transcription Factor, Doxycycline Inducible Lentiviral Transduction System
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Generation of Induced Pluripotent Stem Cells by Reprogramming Mouse Embryonic Fibroblasts with a Four Transcription Factor, Doxycycline Inducible Lentiviral Transduction System

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是否需要REST来实现ESC多能性?

Helle F Jørgensen1, Zhou-Feng Chen, Matthias Merkenschlager

  • 1Lymphocyte Development Group, MRC Clinical Sciences Centre, Imperial College School of Medicine, Hammersmith Hospital Campus, Du Cane Road, London, W12 0NN, UK. helle.jorgensen@imperial.ac.uk

Nature
|February 27, 2009
PubMed
概括

结合DNA的蛋白质REST对于维持胚胎干细胞 (ESC) 多能性并非必不可少. 失去REST功能并不能阻止社会经济委员会保持其自我更新和差异化潜力.

科学领域:

  • 分子生物学分子生物学
  • 干细胞生物学 干细胞生物学
  • 遗传学 是一个遗传学.

背景情况:

  • 结合DNA的蛋白质REST (RE1-沉默转录因子),也称为NRSF (神经限制性沉默因子),是一种转录抑制剂.
  • 在人类和小鼠胚胎干细胞 (ESC) 中,REST是丰富的,并且针对许多神经元基因.
  • 最近的一项研究表明,REST控制ESC自我更新和多能性,理由是REST破坏ESC中性酸酶活性降低和多能性基因表达.

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Reprogramming Induced Pluripotent Stem Cell Lines from Frozen Buffy Coat Samples
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相关实验视频

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11:48

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