Komorowic Erzsebet, McBane Robert D, Charlesworth Jon, Fass David N
Section of Hematology Research, Mayo Clinic and Foundation for Education and Research, Rochester, MN 55905, USA.
Thromb Haemost. 2002 Apr;87(4):763-70.
Fibrillar collagen serves as a thrombogenic surface for platelet adhesion mediated by von Willebrand factor (vWf) at high shear. Although abundant throughout the arterial wall, vWf-dependent platelet deposition to artery cross-sections from perfused citrated blood is localized to the adventitia of the vessel wall. Here we describe a similarly skewed distribution of vWf-binding sites in artery cross-sections. Binding of vWf-coated fluorescent beads, as well as detection of plasma vWf bound to artery cross-section at 3350 s(-1) shear rate with indirect particle-immunofluorescence or immunoelectron microscopy demonstrate vWf binding sites in the adventitia, but not in the media. A monoclonal anti-vWf antibody that interferes with vWf-binding to collagen in a microplate ELISA inhibits vWf-binding to both the adventitia and sections of collagen fibrils. Our data suggest that the media, despite its fibrillar collagen content, evidenced by electron microscopy, is defective for vWf-binding, which may explain its thromboresistant nature at high shear rates.
在高剪切力作用下,纤维状胶原蛋白作为血小板黏附的促血栓形成表面,由血管性血友病因子(vWf)介导。尽管在整个动脉壁中含量丰富,但从灌注的枸橼酸盐血液中,vWf依赖的血小板沉积到动脉横截面的部位局限于血管壁的外膜。在这里,我们描述了动脉横截面中vWf结合位点的类似倾斜分布。用间接颗粒免疫荧光或免疫电子显微镜检测vWf包被的荧光珠的结合,以及在3350 s(-1)剪切速率下与动脉横截面结合的血浆vWf,结果表明vWf结合位点在外膜中,而不在中膜中。一种在微孔板ELISA中干扰vWf与胶原蛋白结合的单克隆抗vWf抗体,可抑制vWf与外膜和胶原纤维切片的结合。我们的数据表明,尽管通过电子显微镜证明中膜含有纤维状胶原蛋白,但其vWf结合存在缺陷,这可能解释了其在高剪切速率下的抗血栓性质。