Hassan S B, Jonsson E, Larsson R, Karlsson M O
Division of Clinical Pharmacology, University Hospital, Uppsala University, Uppsala, Sweden.
J Pharmacol Exp Ther. 2001 Dec;299(3):1140-7.
CHS 828 is a novel drug belonging to the cyanoguanidines. It has shown promising anticancer activity in many preclinical systems and is currently in early clinical trials. Our aim in this study was to assess the growth inhibitory effect of CHS 828 in comparison with paclitaxel, etoposide, and topotecan as a function of concentration and time. U937 GTB, RPMI 8226/S, MDA 231, primary cells from chronic lymphocytic leukemia, and normal mononuclear cells were exposed to CHS 828 and U937 GTB cells were exposed to paclitaxel, etoposide, and topotecan in 18 concentrations for times ranging from 1 to 72 h. Cell survival was measured after 72-h incubation by using the fluorometric microculture cytotoxicity assay. Nonlinear mixed effect modeling was used to model the concentration-effect curves with a modified Hill equation. Patterns of change of drug potency (IC(50)), slope of the concentration-effect curves, and plateau with time were studied. The log IC(50) for CHS 828 decreased with log time in a sigmoid manner for all cell types tested. Although very steep at short and long incubation, the concentration-effect curves became shallow at intermediate times. The log IC(50) for etoposide and topotecan was decreased with log time in a sigmoid manner. The log IC(50) for paclitaxel decreased linearly with log time. The information obtained from modeling the cytotoxic effect of CHS 828 and changes of IC(50) and slope parameters with exposure time suggests a heterogeneous cell response to CHS 828. This could indicate two distinct mechanisms of induction of cell death.
CHS 828是一种属于氰基胍类的新型药物。它在许多临床前研究系统中已显示出有前景的抗癌活性,目前正处于早期临床试验阶段。本研究的目的是评估CHS 828与紫杉醇、依托泊苷和拓扑替康相比,作为浓度和时间函数的生长抑制作用。将U937 GTB、RPMI 8226/S、MDA 231、慢性淋巴细胞白血病原代细胞和正常单核细胞暴露于CHS 828,并将U937 GTB细胞暴露于18种浓度的紫杉醇、依托泊苷和拓扑替康中,暴露时间为1至72小时。在孵育72小时后,使用荧光微量培养细胞毒性测定法测量细胞存活率。使用非线性混合效应模型,用修正的希尔方程对浓度-效应曲线进行建模。研究了药物效力(IC(50))的变化模式、浓度-效应曲线的斜率以及随时间的平台期。对于所有测试的细胞类型,CHS 828的log IC(50)随log时间呈S形下降。尽管在短时间和长时间孵育时非常陡峭,但浓度-效应曲线在中间时间变得平缓。依托泊苷和拓扑替康的log IC(50)随log时间呈S形下降。紫杉醇的log IC(50)随log时间呈线性下降。从对CHS 828细胞毒性作用建模以及IC(50)和斜率参数随暴露时间的变化中获得的信息表明,细胞对CHS 828的反应存在异质性。这可能表明诱导细胞死亡有两种不同的机制。