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Molecular barriers to processes of genetic reprogramming and cell transformation

Induction of pluripotency in human endothelial cells resets epigenetic profile on genome scaleReprogramming of a limited number of human cell types has been achieved through ectopic expression

Molecular barriers to processes of genetic reprogramming and cell transformation

Differentiation of human pluripotent stem cells into mesodermal and ectodermal derivatives is independent of the type of isogenic reprogrammed somatic cells proliferate and differentiate into all types of somatic cells. This capacity makes them a valuable source

Induction of pluripotency in human endothelial cells resets epigenetic profile on genome scaleReprogramming of a limited number of human cell types has been achieved through ectopic expression

An integrative analysis of reprogramming in human isogenic system identified a clone selection criterion state and to differentiate into derivatives of the 3 germ layers. Nevertheless, a molecular comparison

Sweet-Tasting Natural Proteins Brazzein and Monellin: Safe Sugar Substitutes for the Food IndustryThis article presents the results of a comprehensive toxicity assessment of brazzein and monellin

Spatial manipulation of magnetically-responsive nanoparticle engineered human neuronal progenitor cells© 2019 Elsevier Inc. Here we report a detailed investigation of the interaction of neuronal

An integrative analysis of reprogramming in human isogenic system identified a clone selection criterion state and to differentiate into derivatives of the 3 germ layers. Nevertheless, a molecular comparison

Manifestation of Huntington's disease pathology in human induced pluripotent stem cell-derived neurons neurodegenerative disorder, which manifests itself as a loss of GABAergic medium spiny (GABA MS) neurons

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