Furlong B L, Peake I R
Br J Haematol. 1983 Apr;53(4):641-53. doi: 10.1111/j.1365-2141.1983.tb07315.x.
A new, relatively simple technique has been developed in order to study the multimers of factor VIII/von Willebrand factor (VIII/vWF). It involves electrophoresis on SDS agarose gels and electrophoretic transfer (electroblotting) of the separated protein bands onto nitrocellulose membranes, to which they are non-covalently bound. VIII/vWF multimers are then detected by 125I-labelled antibodies to VIII/vWF, and autoradiography. Optimum electrophoretic transfer occurred at 0.5 A, for 18 h, on 0.8% agarose gels, thus enabling detection of the multimeric profile of VIII/vWF in 5 microliters of normal plasma. The multimeric profile for haemophilia A patients was identical to that for normal plasma. In plasma from patients with von Willebrand's disease (vWd), various patterns were seen, with a preponderance of smaller multimers in type II (atypical) vWd, similar to those seen in cryosupernatant. Heterogeneity within a particular type of vWd was also evident. Investigation of commercial factor VIII concentrates showed the presence of 'doublets' of VIII/vWF. Unlike other reported techniques, the rapid transfer and fixing of the protein bands to the nitrocellulose, minimizes loss of resolution, and handling of the paper is easier. It is possible to cut a sample electrophoresis strip into several areas, for incubation with different antibodies. Preliminary experiments also suggest that double antibody techniques are possible, or even removal of a first radiolabelled antibody by low pH, and then incubation of the separated proteins with a second, unrelated antibody.
为了研究凝血因子VIII/血管性血友病因子(VIII/vWF)的多聚体,已开发出一种新的、相对简单的技术。该技术包括在SDS琼脂糖凝胶上进行电泳,并将分离的蛋白条带电泳转移(电印迹)到硝酸纤维素膜上,蛋白条带通过非共价键与硝酸纤维素膜结合。然后用125I标记的VIII/vWF抗体进行检测,并进行放射自显影,以检测VIII/vWF多聚体。在0.8%琼脂糖凝胶上,以0.5 A的电流进行18小时的电泳转移效果最佳,这样就能检测5微升正常血浆中VIII/vWF的多聚体图谱。甲型血友病患者的多聚体图谱与正常血浆的相同。在血管性血友病(vWd)患者的血浆中,观察到了各种不同的图谱,在II型(非典型)vWd中较小的多聚体占优势,类似于冷上清液中观察到的情况。特定类型的vWd内的异质性也很明显。对市售凝血因子VIII浓缩物的研究显示存在VIII/vWF“双峰”。与其他报道的技术不同,蛋白条带快速转移并固定到硝酸纤维素膜上,可将分辨率损失降至最低,并且处理纸张更容易。可以将样品电泳条切成几个区域,以便与不同的抗体进行孵育。初步实验还表明,双抗体技术是可行的,甚至可以通过低pH值去除第一种放射性标记抗体,然后将分离的蛋白质与第二种不相关的抗体进行孵育。