Derivation of human embryonic stem cell lines
Autor: | Tomas Stojanov, Teija T. Peura, Alexis Bosman |
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Rok vydání: | 2007 |
Předmět: |
Somatic cell
Cellular differentiation Cell Culture Techniques Computational biology Biology Cell transplantation Food Animals Animals Humans Research Embryo Creation Small Animals Embryonic Stem Cells Cryopreservation Equine Drug discovery business.industry Embryo Embryonic stem cell Culture Media Biotechnology Oxygen Transplantation embryonic structures Animal Science and Zoology Stem cell business |
Zdroj: | Theriogenology. 67:32-42 |
ISSN: | 0093-691X |
DOI: | 10.1016/j.theriogenology.2006.09.031 |
Popis: | Human embryonic stem cells (hESC) are undifferentiated cells derived from an early embryo that can grow in vitro indefinitely, while retaining their capability to differentiate into specialized somatic cell types. Over the last decade there has been great interest in derivation and culture of these cells, as they can potentially provide a supply of readily available differentiated cells and tissues of all types to be used for therapeutic purposes in cell transplantation in humans, as well as for other medical uses such as drug discovery. The source of hESC lines is usually excess human embryos from in vitro fertilization treatments, although novel ways of producing hESCs have been suggested recently. The actual methods of hESC derivation have not changed greatly since the first report by Thomson et al. in 1998 [1]. However, the main emphasis over the last several years has been in finding defined conditions for derivation and culture of hESCs, because to enable the clinical use of hESC for cell transplantation, the use of animal derived biological components is no longer acceptable. For basic research, the aim is to replace even human derived materials with completely defined systems. In this paper we describe methods utilized in our laboratory for hESC derivation and describe two studies conducted in an attempt to improve derivation efficiency and to enable research outcomes to be achieved using fewer embryos. |
Databáze: | OpenAIRE |
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