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Functionally fused antibodies-A novel adjuvant fusion system.

机译:功能融合抗体-一种新型佐剂融合系统。

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Antibodies capable of recognizing key molecular targets isolated e.g. by phage display technology have been used in the pursuit of new and improved therapies for prevalent human diseases. These approaches often take advantage of non-immunogenic antibody fragments to achieve specific toxin-, radioactivity- or effector-domain delivery. There is now a growing interest in using anti-idiotypic antibodies or other antigen mimics to induce potent immune responses against antigen structures in question. We have earlier reported on the functional rescue of antibodies that are active when fused to the phage, but inactive as soluble protein [Jensen, K.B., Larsen, M., Pedersen, J.S., Christensen, P.A., Alvarez-Vallina, L., Goletz, S., Clark, B.F. and Kristensen, P. (2002) Functional improvement of antibody fragments using a novel phage coat protein III fusion system. Biochem. Biophys. Res. Commun. 298, 566-73.]. The rescue was accomplished by maintaining the fusion between the antibody fragment and portions of thefilamentous bacteriophage coat protein 3, as present in the original antibody-displaying phage. In the present study, we have applied this system in an attempt to improve immunogenicity of anti-idiotypic antibodies isolated by phage display. Here we demonstrate that by preserving linkage between phage antibody and the N-terminal domain of phage coat protein 3, we induce multimerization of the antibody fragments, and improve their immunogenicity. This immunization approach allows induction of anti-idiotypic antibodies in mice, and facilitates the use of antibodies that are non-functional as non-fused soluble protein.
机译:能够识别关键分子靶标的抗体例如噬菌体展示技术已经被用于追求针对人类普遍疾病的新的和改进的疗法。这些方法通常利用非免疫原性抗体片段来实现特定的毒素,放射性或效应域的递送。现在,人们越来越关注使用抗独特型抗体或其他抗原模拟物来诱导针对所讨论抗原结构的强力免疫反应。我们先前已经报道过与抗体融合时具有活性但作为可溶性蛋白无活性的抗体的功能拯救[Jensen,KB,Larsen,M.,Pedersen,JS,Christensen,PA,Alvarez-Vallina,L.,Goletz ,S.,Clark,BF和Kristensen,P。(2002)使用新型噬菌体外壳蛋白III融合系统对抗体片段的功能改进。生化。生物物理学。 Res。公社298,566-73。]。通过维持抗体片段和丝状噬菌体外壳蛋白3的部分之间的融合来完成拯救,如最初的展示抗体的噬菌体中所存在的。在本研究中,我们已将该系统应用于试图提高通过噬菌体展示分离的抗独特型抗体的免疫原性的尝试。在这里,我们证明了通过保留噬菌体抗体和噬菌体外壳蛋白3 N末端结构域之间的连接,我们可以诱导抗体片段的多聚化,并提高其免疫原性。这种免疫方法允许在小鼠中诱导抗独特型抗体,并促进非功能性抗体作为非融合可溶性蛋白的使用。

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