Brocks B, Garin-Chesa P, Behrle E, Park J E, Rettig W J, Pfizenmaier K, Moosmayer D
Institut für Zellbiologie und Immunologie, Universität Stuttgart, Germany.
Mol Med. 2001 Jul;7(7):461-9.
Fibroblast activation protein (FAP) is a type II membrane protein expressed on tumor stroma fibroblasts in more than 90% of all carcinomas. FAP serves as a diagnostic marker and is potential therapeutic target for treatment of a wide variety of FAP+ carcinomas. Murine tumor stroma models and FAP-specific antibodies are required to investigate the functional role of FAP in tumor biology and its usefulness for drug targeting. We here describe the development of antibodies with crossreactivity for human (hFAP) and murine FAP (mFAP), which share 89% amino acid identity.
An FAP-/- mouse was sequentially immunized with recombinant murine and human FAP-CD8 fusion proteins. Immunoglobulin cDNA derived from hyperimmune spleen cells was used for the construction of a combinatorial single chain Fv (scFv) library. Phage display selection of FAP-specific scFv was performed on immobilized hFAP followed by selection on cells expressing murine FAP.
High-affinity, species-crossreactive, FAP-specific scFv were isolated upon sequential phage display selection. A bivalent derivative (minibody M036) constructed thereof was applied for immunohistochemical analyses and allowed detection of FAP expression on stroma cells of different human carcinomas as well as on murine host stroma in a tumor xenograft model.
MB M036, derived from phage display selected species crossreactive scFv, is suitable for tumor stroma targeting and will be a valuable tool in the analyses of the functional role of FAP in tumor biology as well as in the evaluation of the suitability of FAP for drug targeting.
成纤维细胞活化蛋白(FAP)是一种II型膜蛋白,在90%以上的所有癌症的肿瘤基质成纤维细胞上表达。FAP可作为一种诊断标志物,是治疗多种FAP阳性癌症的潜在治疗靶点。需要小鼠肿瘤基质模型和FAP特异性抗体来研究FAP在肿瘤生物学中的功能作用及其在药物靶向治疗中的效用。我们在此描述了对人(hFAP)和小鼠FAP(mFAP)具有交叉反应性的抗体的开发,它们的氨基酸同一性为89%。
用重组小鼠和人FAP-CD8融合蛋白对FAP基因敲除小鼠进行顺序免疫。从超免疫脾细胞中获得的免疫球蛋白cDNA用于构建组合单链Fv(scFv)文库。在固定化的hFAP上进行FAP特异性scFv的噬菌体展示筛选,随后在表达小鼠FAP的细胞上进行筛选。
通过顺序噬菌体展示筛选分离出了高亲和力、种属交叉反应性、FAP特异性的scFv。由此构建的二价衍生物(微型抗体M036)用于免疫组织化学分析,可检测不同人类癌症的基质细胞以及肿瘤异种移植模型中小鼠宿主基质上的FAP表达。
源自噬菌体展示筛选出的种属交叉反应性scFv的微型抗体M036适用于肿瘤基质靶向,将成为分析FAP在肿瘤生物学中的功能作用以及评估FAP作为药物靶点适用性的有价值工具。