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开发针对马白细胞介素 5 的抑制性抗体治疗马昆虫叮咬过敏。

Development of an inhibiting antibody against equine interleukin 5 to treat insect bite hypersensitivity of horses.

机构信息

Institut für Biochemie, Biotechnologie und Bioinformatik, Technische Universität Braunschweig, Spielmannstr. 7, 38106, Braunschweig, Germany.

Wirtschaftsgenossenschaft deutscher Tierärzte eG (WDT), Siemensstraße 14, 30827, Garbsen, Germany.

出版信息

Sci Rep. 2023 Mar 10;13(1):4029. doi: 10.1038/s41598-023-31173-y.

Abstract

Insect bite hypersensitivity (IBH) is the most common allergic skin disease of horses. It is caused by insect bites of the Culicoides spp. which mediate a type I/IVb allergy with strong involvement of eosinophil cells. No specific treatment option is available so far. One concept could be the use of a therapeutic antibody targeting equine interleukin 5, the main activator and regulator of eosinophils. Therefore, antibodies were selected by phage display using the naïve human antibody gene libraries HAL9/10, tested in a cellular in vitro inhibition assay and subjected to an in vitro affinity maturation. In total, 28 antibodies were selected by phage display out of which eleven have been found to be inhibiting in the final format as chimeric immunoglobulin G with equine constant domains. The two most promising candidates were further improved by in vitro affinity maturation up to factor 2.5 regarding their binding activity and up to factor 2.0 regarding their inhibition effect. The final antibody named NOL226-2-D10 showed a strong inhibition of the interleukin 5 binding to its receptor (IC = 4 nM). Furthermore, a nanomolar binding activity (EC = 8.8 nM), stable behavior and satisfactory producibility were demonstrated. This antibody is an excellent candidate for in vivo studies for the treatment of equine IBH.

摘要

昆虫叮咬过敏 (IBH) 是马最常见的过敏性皮肤病。它是由库蠓属昆虫叮咬引起的,介导 I 型/IVb 过敏,嗜酸性粒细胞强烈参与。目前尚无特定的治疗选择。一个概念可以是使用针对马白细胞介素 5 的治疗性抗体,白细胞介素 5 是嗜酸性粒细胞的主要激活剂和调节剂。因此,使用幼稚的人抗体基因库 HAL9/10 通过噬菌体展示选择抗体,在细胞体外抑制测定中进行测试,并进行体外亲和力成熟。总共从噬菌体展示中选择了 28 种抗体,其中 11 种在最终的嵌合免疫球蛋白 G 形式中被发现具有抑制作用,具有马恒定结构域。两个最有前途的候选者通过体外亲和力成熟进一步提高了 2.5 倍的结合活性和 2.0 倍的抑制效果。最终的抗体命名为 NOL226-2-D10,显示出对白细胞介素 5 与其受体结合的强烈抑制作用 (IC = 4 nM)。此外,还证明了具有纳摩尔结合活性 (EC = 8.8 nM)、稳定的行为和令人满意的生产能力。该抗体是治疗马 IBH 的体内研究的优秀候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4c1/10006229/99eff0e6e478/41598_2023_31173_Fig1_HTML.jpg

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