Culture conditions for human embryonic stem cells

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Defined culture conditions of human embryonic stem cells.

Human embryonic stem cells (hESCs) are pluripotent cells that have the potential to differentiate into any tissue in the human body; therefore, they are a valuable resource for regenerative medicine, drug screening, and developmental studies. However, the clinical application of hESCs is hampered by the difficulties of eliminating animal products in the culture medium and/or the complexity of c...

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Establishment, Culture and Freezing of Human and Mouse Embryonic Stem Cells: a Protocol Guide

Studies of the biology of human embryonic stem cells (hES cells) have developed rapidly over the past nine years since the first reports of their derivation. They clearly offer enormous potential, not only for regenerative medicine, but also for drug discovery and toxicology, human developmental biology and cancer research. Realizing these potentials a better understanding of the fundamental as...

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Maintenance of horse embryonic stem cells in different conditions

Embryonic stem cells (ESCs) are originally derived from the ICM of blastocysts and are characterized by their ability to self-renew and their pluripotencies. Only a few reports have been published on ESC isolations and line establishment in animals, even fewer in horses. However, it is still important to isolate equine ESCs for animal biotechnology and therapeutic applications. In the present s...

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Totipotent Embryonic Stem Cells Arise in Ground-State Culture Conditions

Embryonic stem cells (ESCs) are derived from mammalian embryos during the transition from totipotency, when individual blastomeres can make all lineages, to pluripotency, when they are competent to make only embryonic lineages. ESCs maintained with inhibitors of MEK and GSK3 (2i) are thought to represent an embryonically restricted ground state. However, we observed heterogeneous expression of ...

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Differentiation of human embryonic stem cells into immunostimulatory dendritic cells under feeder-free culture conditions.

PURPOSE The objective of this study was to develop a scalable and broadly applicable active immunotherapy approach against cancer, circumventing the limitations typically encountered with autologous vaccination strategies. We hypothesized that human embryonic stem cells (hESC) can serve as a virtually unlimited source for generating dendritic cells (DC) with potent antigen-presenting function. ...

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ژورنال

عنوان ژورنال: Reproduction

سال: 2006

ISSN: 1470-1626,1741-7899

DOI: 10.1530/rep.1.01079