Li Qianjun, Maddox Clinton, Rasmussen Lynn, Hobrath Judith V, White Lucile E
Department of Biochemistry and Molecular Biology, Southern Research Institute, Birmingham, AL 35205, United States.
Antiviral Res. 2009 Sep;83(3):267-73. doi: 10.1016/j.antiviral.2009.06.004. Epub 2009 Jun 24.
Bluetongue virus (BTV) infection is one of the most important diseases of domestic livestock. There are no antivirals available against BTV disease. In this paper, we present the development, optimization and validation of an in vitro cell-based high-throughput screening (HTS) assay using the luminescent-based CellTiter-Glo reagent to identify novel antivirals against BTV. Conditions of the cytopathic effect (CPE)-based assay were optimized at cell density of 5000 cells/well in medium containing 1% FBS and a multiplicity of infection at 0.01 in 384-well plate, with Z'-values > or = 0.70, Coefficient of Variations > or = 5.68 and signal-to-background ratio > or = 7.10. This assay was further validated using a 9532 compound library. The fully validated assay was then used to screen the 194,950 compound collection, which identified 693 compounds with >30% CPE inhibition. The 10-concentration dose response assay identified 185 structures with IC(50) < or =100 microM, out of which 42 compounds were grouped into six analog series corresponding to six scaffolds enriched within the active set compared to their distribution in the library. The CPE-based assay development demonstrated its robustness and reliability, and its application in the HTS campaign will make significant contribution to the antiviral drug discovery against BTV disease.
蓝舌病病毒(BTV)感染是家畜最重要的疾病之一。目前尚无针对BTV疾病的抗病毒药物。在本文中,我们介绍了一种基于细胞的体外高通量筛选(HTS)检测方法的开发、优化和验证,该方法使用基于发光的CellTiter-Glo试剂来鉴定针对BTV的新型抗病毒药物。基于细胞病变效应(CPE)的检测条件在含有1%胎牛血清的培养基中,细胞密度为5000个细胞/孔,感染复数为0.01,在384孔板中进行优化,Z'值≥0.70,变异系数≥5.68,信号背景比≥7.10。该检测方法使用9532种化合物库进行了进一步验证。然后,使用经过充分验证的检测方法对194950种化合物集合进行筛选,鉴定出693种具有>30% CPE抑制作用的化合物。10浓度剂量反应检测鉴定出185种IC(50)≤100 microM的结构,其中42种化合物被分为六个类似物系列,对应于与它们在库中的分布相比在活性集中富集的六个支架。基于CPE的检测方法的开发证明了其稳健性和可靠性,其在高通量筛选活动中的应用将为针对BTV疾病的抗病毒药物发现做出重大贡献。