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巨噬细胞在体内促进血管性血友病因子和凝血因子 VIII 的细胞摄取。

Macrophages contribute to the cellular uptake of von Willebrand factor and factor VIII in vivo.

作者信息

van Schooten Carina J, Shahbazi Shirin, Groot Evelyn, Oortwijn Beatrijs D, van den Berg H Marijke, Denis Cécile V, Lenting Peter J

机构信息

Department of Clinical Chemistry and Haematology, University Medical Center Utrecht, Utrecht, The Netherlands.

出版信息

Blood. 2008 Sep 1;112(5):1704-12. doi: 10.1182/blood-2008-01-133181. Epub 2008 Jun 16.

Abstract

Von Willebrand factor (VWF) and factor VIII (FVIII) circulate in a tight noncovalent complex. At present, the cells that contribute to the removal of FVIII and VWF are of unknown identity. Here, we analyzed spleen and liver tissue sections of VWF-deficient mice infused with recombinant VWF or recombinant FVIII. This analysis revealed that both proteins were targeted to cells of macrophage origin. When applied as a complex, both proteins were codirected to the same macrophages. Chemical inactivation of macrophages using gadolinium chloride resulted in doubling of endogenous FVIII levels in VWF-null mice, and of VWF levels in wild-type mice. Moreover, the survival of infused VWF was prolonged almost 2-fold in VWF-deficient mice after gadolinium chloride treatment. VWF and FVIII also bound to primary human macrophages in in vitro tests. In addition, radiolabeled VWF bound to human THP1 macrophages in a dose-dependent, specific, and saturable manner (half-maximal binding at 0.014 mg/mL). Binding to macrophages was followed by a rapid uptake and subsequent degradation of the internalized protein. This process was also visualized using a VWF-green fluorescent protein fusion protein. In conclusion, our data strongly indicate that macrophages play a prominent role in the clearance of the VWF/FVIII complex.

摘要

血管性血友病因子(VWF)和凝血因子VIII(FVIII)以紧密的非共价复合物形式循环。目前,参与清除FVIII和VWF的细胞身份不明。在此,我们分析了输注重组VWF或重组FVIII的VWF缺陷小鼠的脾脏和肝脏组织切片。该分析表明,这两种蛋白质都靶向巨噬细胞来源的细胞。当作为复合物应用时,这两种蛋白质都被共同导向相同的巨噬细胞。用氯化钆化学灭活巨噬细胞导致VWF基因敲除小鼠内源性FVIII水平加倍,野生型小鼠VWF水平加倍。此外,在氯化钆处理后,VWF缺陷小鼠中输注的VWF存活时间延长了近2倍。在体外试验中,VWF和FVIII也与原代人巨噬细胞结合。此外,放射性标记的VWF以剂量依赖性、特异性和饱和性方式与人THP1巨噬细胞结合(在0.014 mg/mL时达到半数最大结合)。与巨噬细胞结合后,内化的蛋白质会迅速被摄取并随后降解。使用VWF-绿色荧光蛋白融合蛋白也观察到了这一过程。总之,我们的数据有力地表明,巨噬细胞在VWF/FVIII复合物的清除中起重要作用。

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