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Linker Immolation Determines Cell Killing Activityof Disulfide-Linked Pyrrolobenzodiazepine Antibody–Drug Conjugates

机译:连接物的献血决定细胞的杀伤活性二硫键连接的吡咯并苯并二氮杂卓抗体-药物缀合物

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摘要

Disulfide bonds could be valuable linkers for a variety of therapeutic applications requiring tunable cleavage between two parts of a molecule (e.g., antibody–drug conjugates). The in vitro linker immolation of β-mercaptoethyl-carbamate disulfides and DNA alkylation properties of associated payloads were investigated to understand the determinant of cell killing potency of anti-CD22 linked pyrrolobenzodiazepine (PBD-dimer) conjugates. Efficient immolation and release of a PBD-dimer with strong DNA alkylation properties were observed following disulfide cleavage of methyl- and cyclobutyl-substituted disulfide linkers. However, the analogous cyclopropyl-containing linker did not immolate, and the associated thiol-containing product was a poor DNA alkylator. As predicted from these in vitro assessments, the related anti-CD22 ADCs showed different target-dependent cell killing activities in WSU-DLCL2 and BJAB cell lines. These results demonstrate how the in vitro immolation models can be used to help design efficacious ADCs.
机译:对于需要在分子的两个部分之间进行可调裂解的各种治疗应用,二硫键可能是有价值的连接子(例如抗体-药物偶联物)。研究了β-巯基乙基-氨基甲酸酯二硫化物的体外接头消灭和相关有效负载的DNA烷基化特性,以了解抗CD22连接的吡咯并苯并二氮杂(PBD-二聚体)缀合物对细胞杀伤力的决定性作用。在甲基和环丁基取代的二硫键被二硫键裂解后,观察到具有强大的DNA烷基化特性的PBD-二聚体的有效分解和释放。但是,类似的含环丙基的连接基并没有被烧毁,相关的含硫醇的产物是一个不良的DNA烷基化剂。从这些体外评估中可以预测,相关的抗CD22 ADC在WSU-DLCL2和BJAB细胞系中显示出不同的靶标依赖性细胞杀伤活性。这些结果证明了体外献血模型可用于帮助设计有效的ADC。

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