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- W2625249 abstract "Isolated from the constraints of implantation and occurring in simple unilaminar epithelia, the progressive separations of the early marsupial cell lineages show evidence of marsupial evolutionary history. The role of the trophoblast and hypoblast remains nutritional, but nutrient transfer is from the external uterine milieu to the pluriblast and then epiblast rather than from the internal yolk as in the lower amniotes. The yolk has been replaced by a cleavage cavity filled with extracellular matrix. The trophoblast and hypoblast probably play a role in signaling lineage separation, but the nature of this is unknown. Mechanisms to create diversity within developing epithelia also operate in these two lineages. A limited amount of evidence suggests that pluriblast and epiblast cells are pluripotential at least. They have a stem cell–like appearance ultrastructurally and in vitro, but they do not need to be cultured over fibroblast feeder layers to maintain this state. A fate mapping study has confirmed that the neuroectoderm and embryonic ectoderm arise within the epiblast, and histological studies suggest that the epiblast gives rise to all cell lineages of the embryo and extraembryonic mesoderm. Further, fate mapping studies and analysis of cells in vitro should confirm these earlier predictions." @default.
- W2625249 created "2016-06-24" @default.
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- W2625249 date "1999-01-01" @default.
- W2625249 modified "2023-10-18" @default.
- W2625249 title "Early Cell Lineages in Marsupial Embryos" @default.
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- W2625249 doi "https://doi.org/10.1016/b978-012505255-9/50035-3" @default.
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