Results 251 to 260 of about 5,338,715 (307)
<i>Lyar</i> contributes to cell cycle progression and multi-lineage differentiation in mouse embryonic stem cells. [PDF]
Pan Y, Su Y, Xing L, Yao M.
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Mitochondrial metabolic imbalance drives diploidization in mouse haploid embryonic stem cells via NADPH overload. [PDF]
Di Minin G +6 more
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Low oxygen environment alters transcripts related to energy metabolism without altering the pluripotency core of bovine embryonic stem cells. [PDF]
Botigelli RC +5 more
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Stem Cells and Development, 2007
Stem cells are unique cell populations with the ability to choose between self-renewal and differentiation. Embryonic stem (ES) cells have the ability to form any fully differentiated cell of the body. To date, only three species of mammals have yielded long-term cultures of self-renewing ES cells- mice, monkeys, and humans.
Atindriya, Biswas, Robert, Hutchins
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Stem cells are unique cell populations with the ability to choose between self-renewal and differentiation. Embryonic stem (ES) cells have the ability to form any fully differentiated cell of the body. To date, only three species of mammals have yielded long-term cultures of self-renewing ES cells- mice, monkeys, and humans.
Atindriya, Biswas, Robert, Hutchins
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Stem Cell Reviews, 2006
Embryonic stem (ES) cells are pluripotent cells that can be isolated and grown in vitro from the inner cell mass of blastocysts. Their potential to differentiate into any cell of the body makes them a promising starting material for cell therapy.
Ding, L., Buchholz, F.
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Embryonic stem (ES) cells are pluripotent cells that can be isolated and grown in vitro from the inner cell mass of blastocysts. Their potential to differentiate into any cell of the body makes them a promising starting material for cell therapy.
Ding, L., Buchholz, F.
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Journal of Cell Science, 2000
ABSTRACT Embryonic stem (ES) cells are cells derived from the early embryo that can be propagated indefinitely in the primitive undifferentiated state while remaining pluripotent; they share these properties with embryonic germ (EG) cells.
M F, Pera, B, Reubinoff, A, Trounson
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ABSTRACT Embryonic stem (ES) cells are cells derived from the early embryo that can be propagated indefinitely in the primitive undifferentiated state while remaining pluripotent; they share these properties with embryonic germ (EG) cells.
M F, Pera, B, Reubinoff, A, Trounson
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Embryonic Stem Cells and Infertility
American Journal of Perinatology, 2018AbstractEmbryonic stem cells (ESCs) have the ability to differentiate into several cell lineages and self-renew. Through a spontaneous process, ESCs can differentiate into germ cells of various stages, partly due to their self-renewal ability and their microenvironment culture.
Nahid, Lorzadeh, Nastaran, Kazemirad
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Trends in Cell Biology, 2012
Embryonic stem cells (ESCs) - undifferentiated cells originating from preimplantation stage embryos - have prolonged self-renewal capacity and are pluripotent. Activation of the canonical Wnt pathway is implicated in maintenance of and exit from the pluripotent state. Recent findings demonstrate that the essential mediator of canonical Wnt signaling, β-
Jason, Wray, Christine, Hartmann
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Embryonic stem cells (ESCs) - undifferentiated cells originating from preimplantation stage embryos - have prolonged self-renewal capacity and are pluripotent. Activation of the canonical Wnt pathway is implicated in maintenance of and exit from the pluripotent state. Recent findings demonstrate that the essential mediator of canonical Wnt signaling, β-
Jason, Wray, Christine, Hartmann
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The Validated Embryonic Stem Cell Test with Murine Embryonic Stem Cells
2018Birth defects are the leading cause of infant mortality in the USA, yet the causes of most of these conditions are unknown. While a combination of genetic and environmental factors are suspected in most cases, little information exists about the health risks that prenatal exposure to many common chemicals poses for the fetus.
Lauren M, Walker +2 more
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