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Disulfide-Linked Antibody−Maytansinoid Conjugates: Optimization of In Vivo Activity by Varying the Steric Hindrance at Carbon Atoms Adjacent to the Disulfide Linkage

化学 结合 二硫键 体内 连接器 体外 位阻效应 二硫苏糖醇 立体化学 生物化学 半胱氨酸 生物 操作系统 数学分析 生物技术 计算机科学 数学
作者
Brenda Kellogg,Lisa M. Garrett,Yelena Kovtun,Katharine C. Lai,Barbara A. Leece,Michael L. Miller,Gillian Payne,Rita M. Steeves,Kathleen R. Whiteman,Wayne C. Widdison,Hongsheng Xie,Rajeeva Singh,Ravi V.J. Chari,John M. Lambert,Robert J. Lutz
出处
期刊:Bioconjugate Chemistry [American Chemical Society]
卷期号:22 (4): 717-727 被引量:191
标识
DOI:10.1021/bc100480a
摘要

In this report, we describe the synthesis of a panel of disulfide-linked huC242 (anti-CanAg) antibody maytansinoid conjugates (AMCs), which have varying levels of steric hindrance around the disulfide bond, in order to investigate the relationship between stability to reduction of the disulfide linker and antitumor activity of the conjugate in vivo. The conjugates were first tested for stability to reduction by dithiothreitol in vitro and for plasma stability in CD1 mice. It was found that the conjugates having the more sterically hindered disulfide linkages were more stable to reductive cleavage of the maytansinoid in both settings. When the panel of conjugates was tested for in vivo efficacy in two human colon cancer xenograft models in SCID mice, it was found that the conjugate with intermediate disulfide bond stability having two methyl groups on the maytansinoid side of the disulfide bond and no methyl groups on the linker side of the disulfide bond (huC242-SPDB-DM4) displayed the best efficacy. The ranking of in vivo efficacies of the conjugates was not predicted by their in vitro potencies, since all conjugates were highly active in vitro, including a huC242-SMCC-DM1 conjugate with a noncleavable linkage which showed only marginal activity in vivo. These data suggest that factors in addition to intrinsic conjugate potency and conjugate half-life in plasma influence the magnitude of antitumor activity observed for an AMC in vivo. We provide evidence that bystander killing of neighboring nontargeted tumor cells by diffusible cytotoxic metabolites produced from target cell processing of disulfide-linked antibody-maytansinoid conjugates may be one additional factor contributing to the activity of these conjugates in vivo.
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