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Effect of Small-Molecule-Binding Affinity on Tumor Uptake In Vivo: A Systematic Study Using a Pretargeted Bispecific Antibody

机译:小分子结合亲和力对体内肿瘤摄取的影响:使用预靶向双特异性抗体的系统研究

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摘要

Small-molecule ligands specific for tumor-associated surface receptors have wide applications in cancer diagnosis and therapy. Achieving high-affinity binding to the desired target is important for improving detection limits and for increasing therapeutic efficacy. However, the affinity required for maximal binding and retention remains unknown. Here, we present a systematic study of the effect of small-molecule affinity on tumor uptake in vivo with affinities spanning a range of three orders of magnitude. A pretargeted bispecific antibody with different binding affinities to different DOTA (1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid)-based small molecules is used as a receptor proxy. In this particular system targeting carcinoembryonic antigen, a small-molecule–binding affinity of 400 pmol/L was sufficient to achieve maximal tumor targeting, and an improvement in affinity to 10 pmol/L showed no significant improvement in tumor uptake at 24 hours postinjection. We derive a simple mathematical model of tumor targeting using measurable parameters that correlates well with experimental observations. We use relations derived from the model to develop design criteria for the future development of small-molecule agents for targeted cancer therapeutics.
机译:特异于肿瘤相关表面受体的小分子配体在癌症诊断和治疗中具有广泛的应用。实现与所需靶标的高亲和力结合对于提高检测限和提高治疗功效非常重要。但是,最大结合和保留所需的亲和力仍然未知。在这里,我们目前对小分子亲和力对体内肿瘤吸收的影响进行系统研究,其亲和力跨越三个数量级。与基于不同DOTA(1,4,7,10-四氮杂环十二烷-1,4,7,10-四乙酸)的小分子具有不同结合亲和力的预靶向双特异性抗体被用作受体代理。在这个针对癌胚抗原的特定系统中,400 pmol / L的小分子结合亲和力足以实现最大的肿瘤靶向,而对10 pmol / L的亲和力的改善并未显示注射后24小时的肿瘤吸收显着改善。我们使用可测量的参数得出一个简单的肿瘤靶向数学模型,该参数与实验观察结果很好相关。我们使用从模型得出的关系来开发针对靶向癌症治疗剂的小分子药物未来开发的设计标准。

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