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Chapter 43

Embryonic and Induced Pluripotent Stem Cells

Cellules souches embryonnaires
Cellules souches embryonnaires
Embryonic stem (ES) cells were first discovered in mice in 1981 by Martin Evans. In 1998, James Thomson identified a method to isolate embryonic stem ...
Maintien de l’état de la cellule ES
Maintien de l’état de la cellule ES
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 ...
Cellules souches pluripotentes induites
Cellules souches pluripotentes induites
Stem cells are undifferentiated cells that divide and produce different cell types. Ordinarily, cells that have differentiated into a specific cell type ...
Reprogrammation somatique vers cellule iPS
Reprogrammation somatique vers cellule iPS
Reprogramming alters the gene expression in somatic cells, transforming them into induced pluripotent stem (iPS) cells over several generations. ...
Modification de la chromatine dans les cellules iPS
Modification de la chromatine dans les cellules iPS
Chromatin modification alters gene expression; therefore, scientists can add histone-modifying enzymes, histone variants, and chromatin remodeling ...
Différenciation cellulaire iPS
Différenciation cellulaire iPS
The ability of induced pluripotent stem cells or iPSCs to differentiate into most body cell types has stimulated repair and regenerative medicine research ...
Transdifférenciation forcée
Transdifférenciation forcée
Transdifferentiation, also known as lineage reprogramming, was first discovered by Selman and Kafatos in 1974 in silkmoths. They observed that the ...
Les cellules EPS et iPS dans la recherche sur les maladies
Les cellules EPS et iPS dans la recherche sur les maladies
Embryonic and induced pluripotent stem cells are excellent models for disease research because of their ability to self-renew and differentiate into most ...
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