Fatal Embryonic Bleeding Events in Mice Lacking Tissue Factor, the Cell-Associated Initiator of Blood Coagulation

Tissue factor (TF) is the cellular receptor for coagulation factor VII/VIIa and is the membrane-bound glycoprotein that is generally viewed as the primary physiological initiator of blood coagulation. To define in greater detail the physiological role of TF in development and hemostasis, the TF gene...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 1996-06, Vol.93 (13), p.6258-6263
Hauptverfasser: Bugge, Thomas H., Xiao, Qing, Kombrinck, Keith W., Flick, Matthew J., Holmbäck, Kenn, Mary Jo S. Danton, Colbert, Melissa C., Witte, David P., Fujikawa, Kazuo, Davie, Earl W., Degen, Jay L.
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Sprache:eng
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Zusammenfassung:Tissue factor (TF) is the cellular receptor for coagulation factor VII/VIIa and is the membrane-bound glycoprotein that is generally viewed as the primary physiological initiator of blood coagulation. To define in greater detail the physiological role of TF in development and hemostasis, the TF gene was disrupted in mice. Mice heterozygous for the inactivated TF allele expressed approximately half the TF activity of wild-type mice but were phenotypically normal. However, homozygous TF-/- pups were never born in crosses between heterozygous mice. Analysis of mid-gestation embryos showed that TF-/- embryos die in utero between days 8.5 and 10.5. TF-/- embryos were morphologically distinct from their TF+/+ and TF+/- littermates after day 9.5 in that they were pale, edematous, and growth retarded. Histological studies showed that early organogenesis was normal. The initial failure in TF-/- embryos appeared to be hemorrhaging, leading to the leakage of embryonic red cells from both extraembryonic and embryonic vessels. These studies indicate that TF plays an indispensable role in establishing and/or maintaining vascular integrity in the developing embryo at a time when embryonic and extraembryonic vasculatures are fusing and blood circulation begins.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.93.13.6258