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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Factor XII inhibition reduces thrombus formation in a primate thrombosis model.
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Factor XII inhibition reduces thrombus formation in a primate thrombosis model.

机译:因子XII抑制减少了灵长类动物血栓形成模型中的血栓形成。

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摘要

The plasma zymogens factor XII (fXII) and factor XI (fXI) contribute to thrombosis in a variety of mouse models. These proteins serve a limited role in hemostasis, suggesting that antithrombotic therapies targeting them may be associated with low bleeding risks. Although there is substantial epidemiologic evidence supporting a role for fXI in human thrombosis, the situation is not as clear for fXII. We generated monoclonal antibodies (9A2 and 15H8) against the human fXII heavy chain that interfere with fXII conversion to the protease factor XIIa (fXIIa). The anti-fXII antibodies were tested in models in which anti-fXI antibodies are known to have antithrombotic effects. Both anti-fXII antibodies reduced fibrin formation in human blood perfused through collagen-coated tubes. fXII-deficient mice are resistant to ferric chloride-induced arterial thrombosis, and this resistance can be reversed by infusion of human fXII. 9A2 partially blocks, and 15H8 completely blocks, the prothrombotic effect of fXII in this model. 15H8 prolonged the activated partial thromboplastin time of baboon and human plasmas. 15H8 reduced fibrin formation in collagen-coated vascular grafts inserted into arteriovenous shunts in baboons, and reduced fibrin and platelet accumulation downstream of the graft. These findings support a role for fXII in thrombus formation in primates.
机译:血浆唑类因子XII(FXII)和因子XI(FXI)有助于各种小鼠模型中的血栓形成。这些蛋白质在止血中发挥有限的作用,表明靶向它们的抗血栓形成疗法可能与低血失风险相关。虽然存在具有支持FXI在人血栓形成的作用的大量流行病学证据,但FXII的情况并不清楚。我们将单克隆抗体(9a2和15h8)抵抗人的FXII重链,其干扰FXII转化为蛋白酶因子XIIA(FXIIA)。在已知抗FXI抗体具有抗血栓形成效果的模型中测试抗FXII抗体。抗FXII抗体均在通过胶原涂层灌注的人血液中减少纤维蛋白形成。 FXII缺陷的小鼠对氯化铁诱导的动脉血栓形成具有抗性,并且通过输注人的FXII可以逆转这种抗性。 9A2部分块,15H8完全阻断,FXII在该模型中的普癌效应。 15H8延长了狒狒和人类等离子体的活性部分血栓形成时间。 15H8降低胶原涂层的血管移植物中的纤维蛋白形成插入狒狒中的动酮分流中,并降低了移植物下游的纤维蛋白和血小板积累。这些发现支持在灵长类动物中血栓形成中的FXII作用。

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