首页> 美国卫生研究院文献>International Journal for Parasitology: Drugs and Drug Resistance >Development and application of a sensitive phenotypic high-throughput image-based assay to identify compound activity against Trypanosoma cruzi amastigotes
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Development and application of a sensitive phenotypic high-throughput image-based assay to identify compound activity against Trypanosoma cruzi amastigotes

机译:一种灵敏的基于表型高通量图像的检测方法的开发和应用以鉴定抗克鲁斯锥虫的化合物活性

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摘要

We have developed a high content 384-well, image-based assay to estimate the effect of compound treatment on Trypanosoma cruzi amastigotes in 3T3 fibroblasts. In the same well, the effect of compound activity on host cells can also be determined, as an initial indicator of cytotoxicity. This assay has been used to identify active compounds from an in-house library of compounds with either known biological activity or that are FDA approved, and separately, from the Medicines for Malaria Venture Malaria Box collection. Active compounds were screened against T. cruzi trypomastigotes, utilising an assay developed with the viability dye resazurin. Twelve compounds with reconfirmed solid sample activity, with IC50 values of less than 10 μM and selectivity indices to T. cruzi amastigotes over 3T3 host cells of between >22 and 319 times were identified from these libraries. As 3T3 cells are contact inhibited, with limited proliferation in the assay, selective compounds of interest were profiled in a separate assay to estimate the viability of compound treated, replicating HEK293 cells. Selective compounds that were not previously reported in the literature were further profiled by extending the incubation time against amastigote infected 3T3 cells to determine if there were residual amastigotes post-treatment, important for the consideration of the exposure time required for further biological characterisation. The assay development process and the suitability of identified compounds as hit molecules for Chagas disease research are discussed.
机译:我们已经开发了一种基于图像的高含量384孔测定法,以评估化合物治疗对3T3成纤维细胞中克鲁氏锥虫锥虫的影响。在同一孔中,还可以确定化合物活性对宿主细胞的影响,作为细胞毒性的初步指标。该测定法已用于从内部化合物库中鉴定具有已知生物学活性或已获得FDA批准的化合物的活性化合物,这些化合物分别来自“疟疾风险管理疟疾药箱”药品。利用用活力染料刃天青素开发的测定方法,针对克鲁维氏锥虫伪狂犬病筛选活性化合物。从这些文库中鉴定出了十二种具有确认的固体样品活性的化合物,其IC50值小于10μM,并且在3T3宿主细胞上对克鲁维丝锥虫的选择性指数大于22到319次。由于3T3细胞受到接触抑制,因此在测定中的增殖有限,因此在单独的测定中分析了感兴趣的选择性化合物,以评估经化合物处理,复制的HEK293细胞的活力。通过延长与受鞭毛虫感染的3T3细胞的孵育时间,以确定在处理后是否存在残留的变形虫,进一步分析了以前未在文献中报道的选择性化合物,这对于考虑进一步生物学表征所需的暴露时间很重要。讨论了测定开发过程以及所鉴定化合物是否适合作为查加斯病研究的命中分子。

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