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Cytotoxic Enhancement of a Bispecific Diabody by Format Conversion to Tandem Single-chain Variable Fragment (taFv): THE CASE OF THE hEx3 DIABODY*

机译:通过格式转换成串联单链可变片段(taFv)来增强双特异性双抗体的细胞毒作用:hEx3双抗体的情况*

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摘要

Diabodies (Dbs) and tandem single-chain variable fragments (taFv) are the most widely used recombinant formats for constructing small bispecific antibodies. However, only a few studies have compared these formats, and none have discussed their binding kinetics and cross-linking ability. We previously reported the usefulness for cancer immunotherapy of a humanized bispecific Db (hEx3-Db) and its single-chain format (hEx3-scDb) that target epidermal growth factor receptor and CD3. Here, we converted hEx3-Db into a taFv format to investigate how format affects the function of a small bispecific antibody; our investigation included a cytotoxicity assay, surface plasmon resonance spectroscopy, thermodynamic analysis, and flow cytometry. The prepared taFv (hEx3-taFv) showed an enhanced cytotoxicity, which may be attributable to a structural superiority to the diabody format in cross-linking target cells but not to differences in the binding affinities of the formats. Comparable cross-linking ability for soluble antigens was observed among hEx3-Db, hEx3-scDb, and hEx3-taFv with surface plasmon resonance spectroscopy. Furthermore, drastic increases in cytotoxicity were found in the dimeric form of hEx3-taFv, especially when the two hEx3-taFv were covalently linked. Our results show that converting the format of small bispecific antibodies can improve their function. In particular, for small bispecific antibodies that target tumor and immune cells, a functional orientation that avoids steric hindrance in cross-linking two target cells may be important in enhancing the growth inhibition effect.
机译:双抗体(Dbs)和串联单链可变片段(taFv)是用于构建小的双特异性抗体的最广泛使用的重组形式。然而,只有很少的研究比较了这些形式,没有人讨论它们的结合动力学和交联能力。我们先前报道了针对人为的双特异性Db(hEx3-Db)及其靶向表皮生长因子受体和CD3的单链形式(hEx3-scDb)在癌症免疫治疗中的有用性。在这里,我们将hEx3-Db转换为taFv格式,以研究格式如何影响小的双特异性抗体的功能。我们的研究包括细胞毒性测定,表面等离子体共振光谱,热力学分析和流式细胞仪。制备的taFv(hEx3-taFv)显示出增强的细胞毒性,这可能归因于交联靶细胞中双抗体形式的结构优越性,而不是该形式的结合亲和力的差异。用表面等离子体共振光谱法观察到了hEx3-Db,hEx3-scDb和hEx3-taFv之间可溶抗原的可比交联能力。此外,发现hEx3-taFv的二聚体形式细胞毒性急剧增加,尤其是当两个hEx3-taFv共价连接时。我们的结果表明,转换小的双特异性抗体的格式可以改善其功能。特别地,对于靶向肿瘤和免疫细胞的小的双特异性抗体,在交联两个靶细胞中避免空间位阻的功能取向对于增强生长抑制作用可能是重要的。

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