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纤维蛋白特异性单克隆抗体的筛选:一种新方法的开发。

Screening for fibrin specific monoclonal antibodies: the development of a new procedure.

作者信息

Tymkewycz P M, Creighton-Kempsford L J, Hockley D, Gaffney P J

机构信息

National Institute for Biological Standards and Control (NIBSC), South Mimms, Potters Bar, Hertfordshire, UK.

出版信息

Thromb Haemost. 1992 Jul 6;68(1):48-53.

PMID:1514172
Abstract

The acquisition of monoclonal antibodies specific for human fibrin has been impaired by the similarity in chemical composition between fibrinogen and fibrin and the conformational difference between immobilised and soluble fibrinogen. Five monoclonal antibodies (mabs) with a known affinity for fibrin have been subjected to screening procedures which involved the presentation of different forms of both fibrinogen and fibrin to the test mabs. It was observed by scanning electron microscopy that dried fibrin (denoted fibrin D), immobilised on the wells of PVC plates was morphologically similar to the fibrin found in human clots whereas PVC-immobilised fibrin monolayers (fibrin M) and a homogenised form of fibrin (fibrin FF) presented two very different morphological appearances. It was shown that lack of cross reactivity of a mab with an antigen (e.g. fibrinogen) was validly demonstrated only when both mab and antigen were present in the soluble state. These findings have allowed the generation of a screening procedure which involves the use of fibrin D on PVC plates in conjunction with whole human plasma incubated with the test antibody. This screening procedure has been validated using two mabs, one of which has an exclusive fibrin affinity while the other has a broad spectrum crossreactivity with both fibrinogen and fibrin. This procedure would ensure the acquisition of all the five fibrin-specific mabs used in this study while other less reliable screening procedures might not.

摘要

由于纤维蛋白原与纤维蛋白在化学组成上的相似性以及固定化纤维蛋白原与可溶性纤维蛋白原之间的构象差异,获取对人纤维蛋白具有特异性的单克隆抗体受到了阻碍。五种已知对纤维蛋白有亲和力的单克隆抗体(mabs)已接受筛选程序,该程序涉及向测试单克隆抗体展示不同形式的纤维蛋白原和纤维蛋白。通过扫描电子显微镜观察到,固定在聚氯乙烯(PVC)板孔上的干燥纤维蛋白(称为纤维蛋白D)在形态上与人血凝块中的纤维蛋白相似,而PVC固定的纤维蛋白单层(纤维蛋白M)和一种均质化形式的纤维蛋白(纤维蛋白FF)呈现出两种非常不同的形态外观。结果表明,只有当单克隆抗体和抗原都处于可溶状态时,单克隆抗体与抗原(如纤维蛋白原)缺乏交叉反应才能得到有效证明。这些发现促成了一种筛选程序的产生,该程序涉及在PVC板上使用纤维蛋白D并结合与测试抗体孵育的全人血浆。使用两种单克隆抗体对该筛选程序进行了验证,其中一种对纤维蛋白具有排他性亲和力,而另一种则与纤维蛋白原和纤维蛋白都具有广泛的交叉反应性。该程序将确保获得本研究中使用的所有五种纤维蛋白特异性单克隆抗体,而其他不太可靠的筛选程序可能无法做到这一点。

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