Nardin A, Sutherland W M, Hevey M, Schmaljohn A, Taylor R P
Department of Biochemistry, School of Medicine, University of Virginia, Charlottesville 22908, USA.
J Immunol Methods. 1998 Feb 1;211(1-2):21-31. doi: 10.1016/s0022-1759(97)00168-3.
Previous in vitro and in vivo experiments in our laboratory have demonstrated that cross-linked bispecific monoclonal antibody (mAb) complexes (Heteropolymers, HP) facilitate binding of prototype pathogens to primate erythrocytes (E) via the E complement receptor, CR1. These E-bound immune complexes are safely and rapidly cleared from the bloodstream. In order to generate a robust bispecific system for HP-mediated clearance of real pathogens such as Filoviruses, we have developed the necessary methodologies and reagents using both inactivated Marburg virus (iMV) and a recombinant form of its surface envelope glycoprotein (rGP). We identified mAbs which bind rGP in solution phase immunoprecipitation experiments. HP were prepared by chemically cross-linking an anti-CR1 mAb with several of these anti-Marburg virus mAbs and used to facilitate binding of iMV and rGP to monkey and human E. These HP mediate specific and quantitative binding (> or = 90%) of both antigens to monkey and human E. Binding was also demonstrable in an indirect RIA. E with bound Marburg virus were probed with 125I labeled mAbs to the Marburg surface glycoprotein and more than 100 mAbs are bound per E. It should be possible to adapt this general approach to other pathogens, and experiments underway should lead to an in vivo test of HP-mediated clearance of Marburg virus.
我们实验室之前的体外和体内实验表明,交联双特异性单克隆抗体(mAb)复合物(异聚物,HP)通过红细胞(E)补体受体CR1促进原型病原体与灵长类红细胞(E)的结合。这些与E结合的免疫复合物可安全、快速地从血液中清除。为了构建一个强大的双特异性系统,用于HP介导的诸如丝状病毒等实际病原体的清除,我们利用灭活的马尔堡病毒(iMV)及其表面包膜糖蛋白的重组形式(rGP)开发了必要的方法和试剂。我们在溶液相免疫沉淀实验中鉴定出了能与rGP结合的单克隆抗体。通过将抗CR1单克隆抗体与几种抗马尔堡病毒单克隆抗体进行化学交联来制备HP,并用于促进iMV和rGP与猴和人的红细胞结合。这些HP介导两种抗原与猴和人的红细胞进行特异性和定量结合(≥90%)。在间接放射免疫分析中也证实了这种结合。用125I标记的抗马尔堡表面糖蛋白单克隆抗体检测结合了马尔堡病毒的红细胞,每个红细胞上可结合100多个单克隆抗体。应该可以将这种通用方法应用于其他病原体,并且正在进行的实验应能实现对HP介导的马尔堡病毒清除的体内测试。