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Modulating Therapeutic Activity and Toxicity of Pyrrolobenzodiazepine Antibody-Drug Conjugates with Self-Immolative Disulfide Linkers

机译:用自我侵略性二硫化物接头调节吡咯洛洛二嗪嗪抗体 - 药物缀合物的治疗活性和毒性

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摘要

A novel disulfide linker was designed to enable a direct connection between cytotoxic pyrrolobenzodiazepine (PBD) drugs and the cysteine on a targeting antibody for use in antibody-drug conjugates (ADCs). ADCs composed of a cysteine-engineered antibody were armed with a PBD using a self-immolative disulfide linker. Both the chemical linker and the antibody site were optimized for this new bioconjugation strategy to provide a highly stable and efficacious ADC. This novel disulfide ADC was compared with a conjugate containing the same PBD drug, but attached to the antibody via a peptide linker. Both ADCs had similar efficacy in mice bearing human tumor xenografts. Safety studies in rats revealed that the disulfide-linked ADC had a higher MTD than the peptide-linked ADC. Overall, these data suggest that the novel self-immolative disulfide linker represents a valuable way to construct ADCs with equivalent efficacy and improved safety. (C) 2017 AACR.
机译:设计一种新的二硫化物接头,使细胞毒性吡咯唑二氮杂氮卓(PBD)药物和半胱氨酸之间的直接连接在靶向抗体上用于用于抗体 - 药物缀合物(ADC)。 使用自我侵略性二硫化物接头组成的ADC由半胱氨酸工程抗体组成。 化学接头和抗体部位均针对这种新的生物谐波策略进行了优化,以提供高度稳定和有效的ADC。 将该新型二硫化物ADC与含有相同PBD药物的缀合物进行比较,但通过肽接头连接到抗体上。 两种ADC在患有人肿瘤异种移植物的小鼠中具有相似的疗效。 大鼠的安全性研究表明,二硫键连接的ADC具有比肽连接的ADC更高的MTD。 总的来说,这些数据表明,新型的自我侵略性二硫化物接头代表了用等效功效构建ADC和改善安全性的有价值的方法。 (c)2017年AACR。

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