A Novel Approach for Quantifying the Pharmacological Activity of T-Cell Engagers Utilizing In Vitro Time Course Experiments and Streamlined Data Analysis

效力 体外 外周血单个核细胞 计算生物学 时间点 效应器 计算机科学 生物 免疫学 生物化学 美学 哲学
作者
Arthur J. Van De Vyver,Miro J. Eigenmann,Meric Ovacik,Christian Pohl,Sylvia Herter,Tina Weinzierl,Tanja Fauti,Christian Klein,Thorsten Lehr,Marina Bacac,Antje-Christine Walz
出处
期刊:Aaps Journal [Springer Nature]
卷期号:24 (1) 被引量:2
标识
DOI:10.1208/s12248-021-00637-2
摘要

Abstract CD3-bispecific antibodies are a new class of immunotherapeutic drugs against cancer. The pharmacological activity of CD3-bispecifics is typically assessed through in vitro assays of cancer cell lines co-cultured with human peripheral blood mononuclear cells (PBMCs). Assay results depend on experimental conditions such as incubation time and the effector-to-target cell ratio, which can hinder robust quantification of pharmacological activity. In order to overcome these limitations, we developed a new, holistic approach for quantification of the in vitro dose–response relationship. Our experimental design integrates a time-independent analysis of the dose–response across different time points as an alternative to the static, “snap-shot” analysis based on a single time point commonly used in dose–response assays. We show that the potency values derived from static in vitro experiments depend on the incubation time, which leads to inconsistent results across multiple assays and compounds. We compared the potency values from the time-independent analysis with a model-based approach. We find comparably accurate potency estimates from the model-based and time-independent analyses and that the time-independent analysis provides a robust quantification of pharmacological activity. This approach may allow for an improved head-to-head comparison of different compounds and test systems and may prove useful for supporting first-in-human dose selection.

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