通过排序酶a介导的阿达木单抗Fab与修饰脂肪酸的偶联,延长阿达木单抗Fab的体内半衰期

Qingbin Zhang, Sida Ruan, Yong Wu, Jinhua Zhang, Jianguang Lu, Jun Feng
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引用次数: 0

摘要

阿达木单抗是一种全长单克隆抗体,被广泛用作抗肿瘤坏死因子-α (anti-TNF-α)的药物。在本文中,我们旨在通过Sortase A (SrtA)介导的Fab与脂肪酸(FA)偶联来延长阿达木单抗抗原结合片段(Fab)的体内半衰期。在我们的研究中,阿达木单抗Fab类似物是通过(G4S)3连接体在Fab的重链c端添加SrtA识别序列(LPETGG)和His6标签制备的。采用固相法设计和合成了4个具有不同连接方式的FA基序,然后利用SrtA与Fab类似物偶联制备Fab生物偶联物。通过SDS-PAGE(十二烷基硫酸钠聚丙烯酰胺凝胶电泳)和质谱分析证实了四种Fab生物偶联物(Fab - fa1、Fab - fa2、Fab - fa3和Fab - fa4)的成功生成。然后,分别采用TNF-α-/人血清白蛋白(HSA)结合酶联免疫吸附试验、细胞毒性试验和药代动力学研究检测这些Fab生物偶联物的生物活性和半衰期。与Fab类似物相比,即使存在白蛋白,所有Fab生物偶联物也表现出相似的TNF-α-中和活性,这表明FA修饰后对Fab的功能位点没有明显影响。然而,这些Fab-FA生物偶联物对HSA的亲和力不同,以Fab-FA3表现出最大的亲和力。一项小鼠体内研究进一步表明,Fab - FA3显著改善了药代动力学,其血浆半衰期(19.86小时)比Fab类似物(1.31小时)长15.2倍。综上所述,我们开发了一种新的长效阿达木单抗Fab生物偶联物Fab - fa3,具有更持久的体内活性,可用于针对TNF-α-介导的炎症性疾病的药物开发。
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Extending the in vivo Half-Life of Adalimumab Fab via Sortase A-Mediated Conjugation of Adalimumab Fab with Modified Fatty Acids
Abstract Adalimumab, a full-length monoclonal antibody, is widely used as an anti-tumor necrosis factor-α (anti-TNF-α) agent. In this article, we aimed to prolong the in vivo half-life of adalimumab antigen-binding fragment (Fab) through Sortase A (SrtA)-mediated conjugation of its Fab with fatty acid (FA). In our study, adalimumab Fab analog was prepared by adding an SrtA recognition sequence (LPETGG) and His6 tag to the heavy chain C-terminal of the Fab via (G4S)3 linker. Four FA motifs with different linkers were designed and synthesized by solid-phase methodology, then conjugated with the Fab analog using SrtA to produce Fab bioconjugates. The successful generation of four Fab bioconjugates (Fab–FA1, Fab–FA2, Fab–FA3, and Fab–FA4) was confirmed by SDS-PAGE (sodium dodecyl sulfate polyacrylamide gel electrophoresis) and mass spectrometry. Then, the bioactivities and half-life of these Fab bioconjugates were examined using TNF-α-/human serum albumin (HSA)-binding enzyme-linked immunosorbent assay, cytotoxicity assay, and pharmacokinetic study, respectively. All Fab bioconjugates exhibited similar TNF-α-neutralizing activities when compared with the Fab analog, even in the presence of albumin, indicating that there were no apparent influences on the functional site of Fab after FA modification. However, different degrees of affinity for HSA were observed among these Fab–FA bioconjugates, with Fab–FA3 exhibiting the maximal affinity. An in vivo study in mice further revealed remarkably improved pharmacokinetics of Fab– FA3 with a 15.2-fold longer plasma half-life (19.86 hours) compared with that of the Fab analog (1.31 hours). In summary, we have developed a novel long-acting adalimumab Fab bioconjugate, Fab–FA3, with more sustained in vivo activity, which can be used for drug development targeting TNF-α-mediated inflammatory diseases.
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