Leong S R, DeForge L, Presta L, Gonzalez T, Fan A, Reichert M, Chuntharapai A, Kim K J, Tumas D B, Lee W P, Gribling P, Snedecor B, Chen H, Hsei V, Schoenhoff M, Hale V, Deveney J, Koumenis I, Shahrokh Z, McKay P, Galan W, Wagner B, Narindray D, Hébert C, Zapata G
Department of Immunology, Genentech, Inc., 1 DNA Way, South San Francisco, CA 94080, USA.
Cytokine. 2001 Nov 7;16(3):106-19. doi: 10.1006/cyto.2001.0936.
A neutralizing anti-interleukin-(IL-)8 monoclonal antibody was humanized by grafting the complementary determining regions onto the human IgG framework. Subsequent alanine scanning mutagenesis and phage display enabled the production of an affinity matured antibody with a >100-fold improvement in IL-8 binding. Antibody fragments can be efficiently produced in Escherichia coli but have the limitation of rapid clearance rates in vivo. The Fab' fragment of the antibody was therefore modified with polyethylene glycol (PEG) in order to obtain a more desirable pharmacokinetic profile. PEG (5-40 kDa) was site-specifically conjugated to the Fab' via the single free cysteine residue in the hinge region. In vitro binding and bioassays showed little or no loss of activity. The pharmacokinetic profiles of the 20 kDa, 30 kDa, 40 kDa, and 40 kDa branched PEG-Fab' molecules were evaluated in rabbits. Relative to the native Fab', the clearance rates of the PEGylated molecules were decreased by 44-175-fold. In a rabbit ear model of ischemia/reperfusion injury, all PEGylated Fab' molecules were as efficacious in reducing oedema as the original monoclonal antibody. These studies demonstrate that it is possible to customize the pharmacokinetic properties of a Fab' while retaining its antigen binding activity.
通过将互补决定区嫁接到人IgG框架上,使一种中和性抗白细胞介素-8(IL-8)单克隆抗体人源化。随后的丙氨酸扫描诱变和噬菌体展示使得能够产生一种亲和力成熟的抗体,其与IL-8的结合力提高了100倍以上。抗体片段可在大肠杆菌中高效产生,但在体内具有清除率快的局限性。因此,用聚乙二醇(PEG)对该抗体的Fab'片段进行修饰,以获得更理想的药代动力学特征。PEG(5-40 kDa)通过铰链区的单个游离半胱氨酸残基位点特异性地与Fab'偶联。体外结合和生物测定表明活性几乎没有损失。在兔体内评估了20 kDa、30 kDa、40 kDa和40 kDa分支PEG-Fab'分子的药代动力学特征。相对于天然Fab',聚乙二醇化分子的清除率降低了44-175倍。在兔耳缺血/再灌注损伤模型中,所有聚乙二醇化Fab'分子在减轻水肿方面与原始单克隆抗体一样有效。这些研究表明,在保留其抗原结合活性的同时,可以定制Fab'的药代动力学特性。