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一种 1536 孔板 3D 细胞活力检测法,用于评估药物对球体的细胞毒性作用。

A 1536-Well 3D Viability Assay to Assess the Cytotoxic Effect of Drugs on Spheroids.

机构信息

1 Department of Molecular Medicine, Scripps Florida, Jupiter, FL, USA.

3 Amgen, One Amgen Center Drive, Thousand Oaks, CA, USA.

出版信息

SLAS Discov. 2017 Jun;22(5):516-524. doi: 10.1177/2472555216686308. Epub 2017 Jan 13.

Abstract

Evaluation of drug cytotoxicity traditionally relies on use of cell monolayers, which are easily miniaturized to the 1536-well plate format. Three-dimensional (3D) cell culture models have recently gained popularity thanks to their ability to better mimic the complexity of in vivo systems. Despite growing interest in these more physiologically relevant and highly predictive cell-based models for compound profiling and drug discovery, 3D assays are currently performed in a medium- to low-throughput format, either in 96-well or 384-well plates. Here, we describe the design and implementation of a novel high-throughput screening (HTS)-compatible 1536-well plate assay that enables the parallel formation, size monitoring and viability assessment of 3D spheroids in a highly consistent manner. Custom-made plates featuring an ultra-low-attachment surface and round-bottom wells were evaluated for their compatibility with HTS requirements through a luminescence-based cytotoxicity pilot screen of ~3300 drugs from approved drug and National Cancer Institute (NCI) collections. As anticipated, results from this screen were significantly different from a parallel screen performed on cell monolayers. With the ability to achieve an average Z' factor greater than 0.5, this automation-friendly assay can be implemented to either profile lead compounds in a more economical plate format or to interrogate large compound libraries by ultra-HTS (uHTS).

摘要

传统的药物细胞毒性评估依赖于使用单层细胞,这些细胞很容易微型化为 1536 孔板格式。由于能够更好地模拟体内系统的复杂性,三维(3D)细胞培养模型最近越来越受欢迎。尽管人们对这些更符合生理的、高度预测性的基于细胞的化合物分析和药物发现模型越来越感兴趣,但 3D 测定目前仍以中低通量格式进行,要么在 96 孔板,要么在 384 孔板中进行。在这里,我们描述了一种新颖的高通量筛选(HTS)兼容的 1536 孔板测定法的设计和实施,该方法能够以高度一致的方式平行形成、监测和评估 3D 球体的大小和活力。通过对来自已批准药物和国家癌症研究所(NCI)药物库的约 3300 种药物进行基于发光的细胞毒性初步筛选,评估了具有超低附着表面和圆形底孔的定制板在 HTS 要求方面的兼容性。正如预期的那样,该屏幕的结果与在细胞单层上进行的平行屏幕有显著差异。该自动化友好型测定法能够以更经济的板格式对先导化合物进行分析,或者通过超高通量筛选(uHTS)对大型化合物文库进行分析,实现平均 Z' 因子大于 0.5。

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