Diaclone SAS-Part of Medix Biochemica Group, 6 Rue Dr Jean-François-Xavier Girod, BP 1985, 25000 Besançon, France.
Institut de Chimie Moléculaire de l'Université de Bourgogne, UMR CNRS 6302, Université de Bourgogne Franche-Comté, 21000 Dijon, France.
Int J Mol Sci. 2022 Oct 21;23(20):12677. doi: 10.3390/ijms232012677.
The human leucine-rich repeat-containing protein 15 (LRRC15) is a membrane protein identified as a marker of CAF (cancer-associated fibroblast) cells whose overexpression is positively correlated with cancer grade and outcome. Nuclear molecular imaging (i.e., SPECT and PET) to track LRRC15 expression could be very useful in guiding further therapeutic strategies. In this study, we developed an ScFv mouse phage-display library to obtain small fragment antibodies against human LRRC15 for molecular imaging purposes. Mice were immunized with recombinant human LRRC15 (hLRRC15), and lymph node cells were harvested for ScFv (single-chain variable fragment) phage-display analysis. The built library was used for panning on cell lines with constitutive or induced expression after transfection. The choice of best candidates was performed by screening various other cell lines, using flow cytometry. The selected candidates were reformatted into Cys-ScFv or Cys-diabody by addition of cysteine, and cloned in mammalian expression vectors to obtain batches of small fragments that were further used in site-specific radiolabeling tests. The obtained library was 1.2 × 107 cfu/µg with an insertion rate >95%. The two panning rounds performed on cells permittedenrichment of 2 × 10−3. Screening with flow cytometry allowed us to identify 28 specific hLRRC15 candidates. Among these, two also recognized murine LRCC15 and were reformatted into Cys-ScFv and Cys-diabody. They were expressed transiently in a mammalian system to obtain 1.0 to 4.5 mg of Cys fragments ready for bioconjugation and radiolabeling. Thus, in this paper, we demonstrate the relevance of the phage-display ScFv library approach for the fast-track development of small antibodies for imaging and/or immunotherapy purposes.
人类富含亮氨酸重复序列蛋白 15(LRRC15)是一种膜蛋白,被鉴定为 CAF(癌症相关成纤维细胞)细胞的标志物,其过表达与癌症分级和预后呈正相关。核分子成像(即 SPECT 和 PET)来追踪 LRRC15 的表达对于指导进一步的治疗策略可能非常有用。在这项研究中,我们开发了一种 ScFv 小鼠噬菌体展示文库,以获得针对人 LRRC15 的小分子抗体用于分子成像目的。用重组人 LRRC15(hLRRC15)免疫小鼠,并采集淋巴结细胞进行 ScFv(单链可变片段)噬菌体展示分析。构建的文库用于转染后具有组成型或诱导型表达的细胞系进行淘选。通过筛选其他各种细胞系,使用流式细胞术进行最佳候选物的选择。选择的候选物通过添加半胱氨酸重新构建为 Cys-ScFv 或 Cys-二抗体,并克隆到哺乳动物表达载体中,以获得用于特异性放射性标记测试的小片段批次。获得的文库为 1.2×107 cfu/μg,插入率>95%。在细胞上进行的两轮淘选允许富集 2×10−3。流式细胞术筛选允许我们鉴定出 28 个特异性 hLRRC15 候选物。其中,有两个也识别鼠 LRCC15,并被重新构建为 Cys-ScFv 和 Cys-二抗体。它们在哺乳动物系统中瞬时表达,以获得 1.0 至 4.5 mg 可用于生物偶联和放射性标记的 Cys 片段。因此,在本文中,我们证明了噬菌体展示 ScFv 文库方法对于快速开发用于成像和/或免疫治疗目的的小分子抗体的相关性。