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生产抗 LINGO-1 Li33 抗体的 PEGylated Fab',并评估其在体外和大鼠髓鞘再生模型中的生化和功能特性。

Production of a PEGylated Fab' of the anti-LINGO-1 Li33 antibody and assessment of its biochemical and functional properties in vitro and in a rat model of remyelination.

机构信息

Department of Drug, Biogen Idec, Inc., 14 Cambridge Center, Cambridge, Massachusetts 02142, United States.

出版信息

Bioconjug Chem. 2011 Feb 16;22(2):200-10. doi: 10.1021/bc1002746. Epub 2011 Jan 21.

Abstract

The use of LINGO-1 antagonists to promote repair of damaged myelin is an emerging therapeutic opportunity for treatment of CNS diseases caused by demyelination such as multiple sclerosis. The Li33 anti-LINGO-1 antibody is a potent inducer of myelination in vitro and in vivo, but aggregation issues prevented the engineering of an optimal development candidate. PEGylated Li33 Fab' is one of several versions of the Li33 antibody that is being investigated in an attempt to identify the most favorable anti-LINGO-1 antibody design. For targeted PEGylation, a Li33 Fab' construct was engineered with a single unpaired cysteine in the heavy-chain hinge sequence. The Fab' was expressed in CHO cells, purified, and PEGylated with 20 kDa methoxy-poly(ethylene glycol) maleimide using a reaction strategy optimized to improve the yield of the PEG-Fab'. Biochemical analysis of the Li33 PEG-Fab' verified the selectivity of the PEGylation reaction. The in vitro and in vivo attributes of the PEG-Fab' were benchmarked against a Li33 full antibody. Both the Li33 PEG-Fab' and intact antibody bound LINGO-1 with nanomolar affinity, promoted myelination in an in vitro signaling assay, and promoted the repair of damaged myelin in the rat lysolecithin model. These studies extend our understanding of the biological activity of the Li33 mAb and validate the use of an anti-LINGO-1 PEG-Fab' for treatment of CNS diseases caused by demyelination.

摘要

LINGO-1 拮抗剂的应用为脱髓鞘引起的中枢神经系统疾病(如多发性硬化症)的治疗提供了一种新兴的治疗机会,可促进髓鞘损伤的修复。Li33 抗 LINGO-1 抗体是一种体外和体内强有力的髓鞘形成诱导剂,但聚集问题阻碍了最佳开发候选物的工程设计。聚乙二醇化 Li33 Fab'是正在研究的几种 Li33 抗体版本之一,试图确定最有利的抗 LINGO-1 抗体设计。为了进行靶向 PEG 化,在重链铰链序列中设计了一个带有单个不成对半胱氨酸的 Li33 Fab' 构建体。Fab'在 CHO 细胞中表达、纯化,并使用优化的反应策略用 20 kDa 甲氧基聚(乙二醇)马来酰亚胺进行 PEG 化,以提高 PEG-Fab'的产率。Li33 PEG-Fab'的生化分析验证了 PEG 化反应的选择性。PEG-Fab'的体外和体内特性与 Li33 全长抗体进行了基准测试。Li33 PEG-Fab'和完整抗体均以纳摩尔亲和力结合 LINGO-1,在体外信号测定中促进髓鞘形成,并在大鼠卵磷脂模型中促进受损髓鞘的修复。这些研究扩展了我们对 Li33 mAb 生物学活性的理解,并验证了使用抗 LINGO-1 PEG-Fab'治疗脱髓鞘引起的中枢神经系统疾病的有效性。

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