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- W1588540750 abstract "Stem cells have the ability to produce daughter cells, which may either differentiate into specialized cell types or remain uncommitted over repeated mitotic divisions, thereby maintaining the stem cell population. As such, stem cells offer great promise for research and medicine. They have potential uses in cell-based therapies such as blood or organ replacement, genetic engineering, drug and toxic substance screening and for studies in the fields of reproductive development and cancer. A number of different types of stem cell have been described which possess varying degrees of developmental potential. These may either be naturally-occurring in vivo (adult, fetal or primordial germ cells) or in vitro derived stem cell lines (embryonal carcinomas, embryonic germ cells, embryonic stem cells, extraembryonic stem cells, trophoblast stem cells, epiblast stem cells or induced pluripotent stem cells). Here, we concentrate on the most extensively-researched type, embryonic stem cells (ESC), and how they are derived in mice. In order to understand why mouse ESC are regarded as the ‘gold standard’ for pluripotency to which other stem cell types are compared, we shall begin by outlining the origin, developmental potential and logistical suitability of the various forms of stem cell described so far." @default.
- W1588540750 created "2016-06-24" @default.
- W1588540750 creator A5055035597 @default.
- W1588540750 creator A5086219682 @default.
- W1588540750 date "2011-04-26" @default.
- W1588540750 modified "2023-10-04" @default.
- W1588540750 title "Embryonic Stem Cells and the Capture of Pluripotency" @default.
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- W1588540750 doi "https://doi.org/10.5772/15578" @default.
- W1588540750 hasPublicationYear "2011" @default.
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