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An early pre-liver intraembryonic source of CFU-S in the developing mouse.

TitleAn early pre-liver intraembryonic source of CFU-S in the developing mouse.
Publication TypeJournal Article
Year of Publication1993
AuthorsMedvinsky AL, Samoylina NL, Müller AM, Dzierzak E
JournalNature
Volume364
Issue6432
Pagination64-7
Date Published1993 Jul 1
ISSN0028-0836
KeywordsAnimals, Aorta, Blotting, Southern, Embryo, Mammalian, Gonads, Hematopoietic Stem Cells, Liver, Mesonephros, Mice, Mice, Inbred C57BL, Mice, Inbred CBA, Spleen, Yolk Sac
Abstract

It is widely accepted that during murine embryogenesis, totipotent haematopoietic stem cells first originate in the yolk sac, then migrate to the fetal liver and finally colonize the bone marrow shortly before birth. This view is based on in vitro studies showing that yolk sac cells can differentiate into various haematopoietic lineages and in vivo studies showing that yolk sac contains spleen colony-forming units (CFU-S) beginning at day 8 of gestation. However, some investigators have failed to find statistically significant numbers of CFU-S arising from day 9 yolk sac and, although one group reported that yolk sac could repopulate the haematopoietic system of W mutant mice, others have failed to confirm yolk sac-derived repopulation of adults. In the avian and amphibian systems, the yolk sac gives rise only to early, transitory haematopoiesis whereas the definite adult haematopoietic stem cells in these vertebrates are derived from the mesodermal region containing the dorsal aorta. Because this analogous area of the mouse embryo has not been previously examined for haematopoietic activity, we directly compared the CFU-S activity of the aorta, gonad, mesonephros (AGM) region with the yolk sac and fetal liver during embryogenesis. Here we report that this intra-embryonic AGM region contains CFU-S activity at a higher frequency than that in embryonic yolk sac and that such activity appears in the AGM region before the fetal liver.

DOI10.1038/364064a0
Alternate JournalNature
PubMed ID8316298
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