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Generation of activation-specific human anti-αMβ2 single-chain antibodies as potential diagnostic tools and therapeutic agents

机译:产生活化特异性人抗αmβ2单链抗体作为潜在的诊断工具和治疗剂

摘要

The leukocyte integrin Mac-1 (αMβ2) plays a pivotal role in inflammation and host defense. Upon leukocyte activation, Mac-1 undergoes a conformational change exposing interaction sites for multiple ligands. We aimed to generate single-chain antibodies (scFv's) directed against activation-specific Mac-1 ligand-binding sites. Using human scFv phage libraries, we developed subtractive strategies with depletion of phages binding to nonactivated Mac-1 and selection of phages binding to activated Mac-1, using monocytes as well as CHO cells transfected with native or mutated, activated Mac-1. Three scFv clones demonstrated exclusive binding to activated Mac-1. Mac-1 binding of the ligands fibrinogen, heparin, and ICAM-1, but not C3bi, was inhibited. Using alanine substitutions, the paratope was identified within the heavy chain HCDR3s of the scFv's. The epitope was localized to Lys245-Arg261 of the αM I-domain. In a pilot study with septicemic patients, we provide initial support for the use of these scFv's as markers of monocyte activation and as potential diagnostic tools. Potential therapeutic use was tested in adhesion assays under static and flow conditions demonstrating the selective blockade of activated monocytes only. Furthermore, scFv HCDR3–derived peptides retain selectivity for the activated integrin, providing a unique template for the potential development of inhibitors that are specific for the activated Mac-1.
机译:白细胞整合素Mac-1(αMβ2)在炎症和宿主防御中起关键作用。在白细胞激活后,Mac-1发生构象变化,暴露出多个配体的相互作用位点。我们旨在产生针对激活特异性Mac-1配体结合位点的单链抗体(scFv)。使用人类scFv噬菌体库,我们开发了消减策略,使用单核细胞以及用天然或突变的,活化的Mac-1转染的CHO细胞,减少了与未活化的Mac-1结合的噬菌体并选择了与活化的Mac-1结合的噬菌体。三个scFv克隆显示出与激活的Mac-1的排他性结合。抑制了配体纤维蛋白原,肝素和ICAM-1的Mac-1结合,但不抑制C3bi。使用丙氨酸取代,在scFv的重链HCDR3中鉴定了对位。该表位定位于αMI结构域的Lys245-Arg261。在败血病患者的初步研究中,我们为将这些scFv用作单核细胞活化的标志物和潜在的诊断工具提供了初步支持。在静态和流动条件下的粘附试验中测试了潜在的治疗用途,证明仅选择性阻断了活化的单核细胞。此外,scFv HCDR3衍生的肽保留了对激活的整联蛋白的选择性,为潜在开发针对激活的Mac-1的抑制剂提供了独特的模板。

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