1 Department of Technology R&D, Nexcelom Bioscience LLC, Lawrence, MA, USA.
SLAS Discov. 2017 Jun;22(5):547-557. doi: 10.1177/2472555217689884. Epub 2017 Jan 31.
Three-dimensional (3D) tumor models have been increasingly used to investigate and characterize cancer drug compounds. The ability to perform high-throughput screening of 3D multicellular tumor spheroids (MCTS) can highly improve the efficiency and cost-effectiveness of discovering potential cancer drug candidates. Previously, the Celigo Image Cytometer has demonstrated a novel method for high-throughput screening of 3D multicellular tumor spheroids. In this work, we employed the Celigo Image Cytometer to examine the effects of 14 cancer drug compounds on 3D MCTS of the glioblastoma cell line U87MG in 384-well plates. Using parameters such as MCTS diameter and invasion area, growth and invasion were monitored for 9 and 3 d, respectively. Furthermore, fluorescent staining with calcein AM, propidium iodide, Hoechst 33342, and caspase 3/7 was performed at day 9 posttreatment to measure viability and apoptosis. Using the kinetic and endpoint data generated, we created a novel multiparametric drug-scoring system for 3D MCTS that can be used to identify and classify potential drug candidates earlier in the drug discovery process. Furthermore, the combination of quantitative and qualitative image data can be used to delineate differences between drugs that induce cytotoxic and cytostatic effects. The 3D MCTS-based multiparametric scoring method described here can provide an alternative screening method to better qualify tested drug compounds.
三维(3D)肿瘤模型已越来越多地用于研究和表征癌症药物化合物。高通量筛选 3D 多细胞肿瘤球体(MCTS)的能力可以极大地提高发现潜在癌症药物候选物的效率和成本效益。先前,Celigo 图像细胞仪已经展示了一种高通量筛选 3D 多细胞肿瘤球体的新方法。在这项工作中,我们使用 Celigo 图像细胞仪来研究 14 种癌症药物化合物对 U87MG 胶质母细胞瘤细胞系在 384 孔板中的 3D MCTS 的影响。使用 MCTS 直径和侵袭面积等参数,分别监测 9 天和 3 天的生长和侵袭情况。此外,在处理后第 9 天进行 calcein AM、碘化丙啶、Hoechst 33342 和 caspase 3/7 的荧光染色,以测量活力和细胞凋亡。利用生成的动力学和终点数据,我们创建了一种新的用于 3D MCTS 的多参数药物评分系统,可用于在药物发现过程的早期识别和分类潜在的药物候选物。此外,定量和定性图像数据的组合可用于描绘诱导细胞毒性和细胞抑制作用的药物之间的差异。这里描述的基于 3D MCTS 的多参数评分方法可以提供一种替代筛选方法,以更好地确定测试的药物化合物。