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首页> 外文期刊>Lab on a chip >An automated microfluidic gene-editing platform for deciphering cancer genes
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An automated microfluidic gene-editing platform for deciphering cancer genes

机译:用于破译癌症基因的自动微流体基因编辑平台

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摘要

Gene-editing techniques such as RNA-guided endonuclease systems are becoming increasingly popular for phenotypic screening. Such screens are normally conducted in arrayed or pooled formats. There has been considerable interest in recent years to find new technological methods for conducting these gene-editing assays. We report here the first digital microfluidic method that can automate arrayed gene-editing in mammalian cells. Specifically, this method was useful in culturing lung cancer cells for up to six days, as well as implementing automated gene transfection and knockout procedures. In addition, a standardized imaging pipeline to analyse fluorescently labelled cells was also designed and implemented during these procedures. A gene editing assay for interrogating the MAPK/ERK pathway was performed to show the utility of our platform and to determine the effects of knocking out the RAF1 gene in lung cancer cells. In addition to gene knockout, we also treated the cells with an inhibitor, Sorafenib Tosylate, to determine the effects of enzymatic inhibition. The combination of enzymatic inhibition and guide targeting on device resulted in lower drug concentrations for achieving half-inhibitory effects (IC _(50) ) compared to cells treated only with the inhibitor, confirming that lung cancer cells are being successfully edited on the device. We propose that this system will be useful for other types of gene-editing assays and applications related to personalized medicine.
机译:基因编辑技术,如RNA引导的内切核酸酶系统对于表型筛选越来越受欢迎。这种屏幕通常以阵列或汇总格式进行。近年来,有很大的兴趣,以寻找新的进行这些基因编辑测定的新技术方法。我们在此报告了第一种数字微流体方法,可以在哺乳动物细胞中自动化阵列基因编辑。具体地,该方法可用于培养肺癌细胞长达六天,以及实施自动基因转染和敲除程序。此外,还在这些程序期间设计和实施了分析荧光标记的细胞的标准化成像管道。进行用于询问MAPK / ERK途径的基因编辑测定以显示我们平台的效用,并确定敲出肺癌细胞中RAF1基因的效果。除了基因敲门外,还将细胞与抑制剂索拉非尼甲苯磺酸盐处理过,以确定酶促抑制的影响。与仅与抑制剂处理的细胞相比,酶促抑制和导向装置的组合靶向靶向较低的药物浓度降低(IC _(50)),确认在装置上成功地编辑了肺癌细胞。我们提出该系统对于其他类型的基因编辑测定和与个性化医学有关的应用有用。

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