Generation and Characterization of Iduronidase-Cleavable ADCs

化学 连接器 体内 劈理(地质) 生物化学 癌症研究 计算机科学 断裂(地质) 生物 操作系统 工程类 生物技术 岩土工程
作者
Sebastian Jäger,Doreen Könning,Nicolas Rasche,Felix Hart,Janike Sensbach,C Krug,Sabine Raab-Westphal,Konstantin Richter,Carlo Unverzagt,Stefan Hecht,Jan Anderl,Christian Schröter
出处
期刊:Bioconjugate Chemistry [American Chemical Society]
卷期号:34 (12): 2221-2233 被引量:4
标识
DOI:10.1021/acs.bioconjchem.3c00363
摘要

A crucial design feature for the therapeutic success of antibody-drug conjugates (ADCs) is the linker that connects the antibody with the drug. Linkers must be stable in circulation and efficiently release the drug inside the target cell, thereby having a fundamental impact on ADC pharmacokinetics and efficacy. The variety of enzymatically cleavable linkers applied in ADCs is limited, and some are believed to be associated with unwanted side effects due to the expression of cleavage-mediating enzymes in nonmalignant cells. Based on a bioinformatic screen of lysosomal enzymes, we identified α-l-iduronidase (IduA) as an interesting candidate for ADC linker cleavage because of its low expression in normal tissues and its overexpression in several tumor types. In the present study, we report a novel IduA-cleavable ADC linker using exatecan and duocarmycin as payloads. We showed the functionality of our linker system in cleavage assays using recombinant IduA or cell lysates and compared it to established ADC linkers. Subsequently, we coupled iduronide-exatecan via interchain cysteines or iduronide-duocarmycin via microbial transglutaminase (mTG) to an anti-CEACAM5 (aCEA5) antibody. The generated iduronide-exatecan ADC showed high serum stability and similar target-dependent tumor cell killing in the subnanomolar range but reduced toxicity on nonmalignant cells compared to an analogous cathepsin B-activatable valine-citrulline-exatecan ADC. Finally, in vivo antitumor activity could be demonstrated for an IduA-cleavable duocarmycin ADC. The presented results emphasize the potential of iduronide linkers for ADC development and represent a tool for further balancing out tumor selectivity and safety.
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