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首页> 外文期刊>Journal of biomolecular screening: The official journal of the Society for Biomolecular Screening >High-Content Image-Based Screening of a Signal Transduction Pathway Inhibitor Small-Molecule Library against Highly Pathogenic RNA Viruses
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High-Content Image-Based Screening of a Signal Transduction Pathway Inhibitor Small-Molecule Library against Highly Pathogenic RNA Viruses

机译:针对高致病性RNA病毒的信号转导通路抑制剂小分子文库的高内涵基于图像的筛选

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摘要

High-content image-based screening was developed as an approach to test a small-molecule library of compounds targeting signal transduction pathways for antiviral activity against multiple highly pathogenic RNA viruses. Of the 2843 compounds screened, 120 compounds exhibited 60% antiviral activity. Four compounds (E225-0969, E528-0039, G118-0778, and G544-0735), which were most active against Rift Valley fever virus (RVFV) and showed broad-spectrum antiviral activity, were selected for further evaluation for their concentration-response profile and cytotoxicity. These compounds did not show any visible cytotoxicity at the highest concentration of compound tested (200 mu M). All four of these compounds were more active than ribavirin against several viruses. One compound, E225-0969, had the lowest effective concentration (EC50 = 1.9-8.92 mu M) for all the viruses tested. This compound was 13- and 43-fold more inhibitory against RVFV and Chikungunya virus (CHIKV), respectively, than ribavirin. The highest selectivity index (>106.2) was for E225-0969 against CHIKV. Time-of-addition assays suggested that all four lead compounds targeted early steps in the viral life cycle (entry and/or replication) but not virus egress. Overall, this work demonstrates that high-content image analysis can be used to screen chemical libraries for new antivirals against highly pathogenic viruses.
机译:开发了基于高含量图像的筛选方法,以测试针对信号转导途径的化合物小分子文库对多种高致病性RNA病毒的抗病毒活性。在筛选的2843种化合物中,有120种化合物表现出60%的抗病毒活性。选择了四种对裂谷热病毒(RVFV)最具活性并显示出广谱抗病毒活性的化合物(E225-0969,E528-0039,G118-0778和G544-0735),以进一步评估其浓度,反应概况和细胞毒性。这些化合物在所测试化合物的最高浓度(200μM)下未显示任何可见的细胞毒性。这些化合物的全部四种对病毒的活性均高于病毒唑。对于所有测试的病毒,一种化合物E225-0969的最低有效浓度(EC50 = 1.9-8.92μM)。该化合物对RVFV和基孔肯雅病毒(CHIKV)的抑制作用分别比利巴韦林高13倍和43倍。对于E225-0969对CHIKV的最高选择性指数(> 106.2)。添加时间分析表明,所有四种先导化合物均以病毒生命周期的早期步骤(进入和/或复制)为目标,而不是病毒流出。总的来说,这项工作表明高含量图像分析可用于筛选化学文库中针对高致病性病毒的新型抗病毒剂。

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