Chiaraviglio Lucius, Kirby James E
Department of Pathology, Beth Israel Deaconess Medical Center , Boston, Massachusetts.
Assay Drug Dev Technol. 2014 May;12(4):219-28. doi: 10.1089/adt.2014.577.
Interpretation of high throughput screening (HTS) data in cell-based assays may be confounded by cytotoxic properties of screening compounds. Therefore, assessing cell toxicity in real time during the HTS process itself would be highly advantageous. Here, we investigate the potential of putatively impermeant, fluorescent, DNA-binding dyes to give cell toxicity readout during HTS. Amongst 19 DNA-binding dyes examined, three classes were identified that were (1) permeant, (2) cytotoxic, or (3) neither permeant nor cytotoxic during 3-day incubation with a macrophage cell line. In the last class, four dyes (SYTOX Green, CellTox Green, GelGreen, and EvaGreen) gave highly robust cytotoxicity data in 384-well screening plates. As proof of principle, successful combination with a luminescence-based assay in HTS format was demonstrated. Here, both intracellular growth of Legionella pneumophila (luminescence) and host cell viability (SYTOX Green exclusion) were assayed in the same screening well. Incorporation of membrane-impermeant, DNA-binding, fluorescent dyes in HTS assays should prove useful by allowing evaluation of cytotoxicity in real time, eliminating reagent addition steps and effort associated with endpoint cell viability analysis, and reducing the need for follow-up cytotoxicity screening.
在基于细胞的检测中,高通量筛选(HTS)数据的解读可能会受到筛选化合物细胞毒性特性的干扰。因此,在HTS过程中实时评估细胞毒性将具有很大优势。在此,我们研究了推定不可渗透的荧光DNA结合染料在HTS过程中给出细胞毒性读数的潜力。在检测的19种DNA结合染料中,鉴定出三类染料,它们在与巨噬细胞系进行3天孵育期间分别为:(1)可渗透的;(2)具有细胞毒性的;(或者3)既不可渗透也无细胞毒性的。在最后一类中,四种染料(SYTOX Green、CellTox Green、GelGreen和EvaGreen)在384孔筛选板中给出了高度可靠的细胞毒性数据。作为原理验证,展示了与HTS格式的基于发光的检测成功结合的情况。在此,在同一筛选孔中同时检测了嗜肺军团菌的细胞内生长(发光)和宿主细胞活力(SYTOX Green排除)。在HTS检测中加入不可渗透膜的DNA结合荧光染料应会被证明是有用的,因为它能够实时评估细胞毒性,省去与终点细胞活力分析相关的试剂添加步骤和工作量,并减少后续细胞毒性筛选的需求。