van Schooten Carina J, Shahbazi Shirin, Groot Evelyn, Oortwijn Beatrijs D, van den Berg H Marijke, Denis Cécile V, Lenting Peter J
Department of Clinical Chemistry and Haematology, University Medical Center Utrecht, Utrecht, The Netherlands.
Blood. 2008 Sep 1;112(5):1704-12. doi: 10.1182/blood-2008-01-133181. Epub 2008 Jun 16.
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.
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。