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首页> 外文期刊>Thrombosis Research: An International Journal on Vascular Obstruction, Hemorrhage and Hemostasis >Characterization of recombinant murine factor VIIa and recombinant murine tissue factor: a human-murine species compatibility study.
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Characterization of recombinant murine factor VIIa and recombinant murine tissue factor: a human-murine species compatibility study.

机译:重组鼠因子VIIa和重组鼠组织因子的表征:一项人鼠物种相容性研究。

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Tissue factor (TF) is believed to play an important role in coagulation, inflammation, angiogenesis and wound healing as well as in tumor growth and metastasis. To facilitate in vivo studies in experimental murine models, we have produced recombinant murine factor VII (FVII) and the ectodomain of murine TF, TF(1-223). Murine FVII was activated to FVIIa with human factor Xa and upon reaction with FFR-chloromethyl ketone converted into an active site-blocked TF antagonist, FFR-FVIIa. The activity of murine FVIIa was characterized in factor X activation assays as well as in clot assays with murine and human thromboplastin in murine and human plasma. In these assays murine FVIIa exhibited a specific activity equivalent to or higher than human FVIIa. Further analysis showed that murine FVIIa binds with high affinity to both murine and human TF, whereas the association of human FVIIa to murine TF is about three orders of magnitude weaker than the association to human TF. This difference was further emphasized by the effect of murine-and human FFR-FVIIa on bleeding in an in vivo mouse model. Intra-peritoneal administration of 1 mg/kg murine FFR-FVIIa significantly prolonged the tail-bleeding time, whereas no effect on bleeding was observed with a 25-times higher dose of the human FFR-FVIIa. Together, these data confirms the notion of poor species compatibility between human FVII and murine TF and emphasizes the requirement for autologous FVIIa in studies on the role of the TF in experimental in vivo pharmacology.
机译:组织因子(TF)被认为在凝血,炎症,血管生成和伤口愈合以及肿瘤生长和转移中起重要作用。为了促进在实验鼠模型中的体内研究,我们生产了重组鼠因子VII(FVII)和鼠TF的胞外域TF(1-223)。鼠FVII被人因子Xa激活为FVIIa,并与FFR-氯甲基酮反应后转化为活性位点封闭的TF拮抗剂FFR-FVIIa。在因子X活化测定以及在鼠和人血浆中用鼠和人促凝血酶原蛋白的凝块测定中表征了鼠FVIIa的活性。在这些测定中,鼠FVIIa表现出与人FVIIa相同或更高的比活性。进一步的分析表明,鼠FVIIa与鼠和人TF都具有高亲和力结合,而人FVIIa与鼠TF的结合比与人TF的结合弱约三个数量级。鼠和人FFR-FVIIa对体内小鼠模型出血的作用进一步强调了这种差异。腹膜内给予1 mg / kg鼠FFR-FVIIa可以显着延长尾巴出血时间,而使用人FFR-FVIIa的剂量高25倍时,未观察到对出血的影响。总之,这些数据证实了人类FVII与鼠类TF之间物种相容性差的观点,并强调了自体FVIIa在TF在体内实验药理学中的作用研究中的要求。

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