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High Throughput Ratio Imaging to Profile Caspase Activity: Potential Application in Multiparameter High Content Apoptosis Analysis and Drug Screening

机译:高通量比成像来分析胱天蛋白酶的活性:在多参数高含量细胞凋亡分析和药物筛选中的潜在应用

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摘要

Recent advancement in the area of green fluorescent protein techniques coupled with microscopic imaging has significantly contributed in defining and dissecting subcellular changes of apoptosis with high spatio-temporal resolution. Although single cell based studies using EGFP and associated techniques have provided valuable information of initiation and hierarchical changes of apoptosis, they are yet to be exploited for multiparameter cell based real time analysis for possible drug screening or pathway defining in a high throughput manner. Here we have developed multiple cancer cell lines expressing FRET sensors for active caspases and adapted them for high throughput live cell ratio imaging, enabling high content image based multiparameter analysis. Sensitivity of the system to detect live cell caspase activation was substantiated by confocal acceptor bleaching as well as wide field FRET imaging. Multiple caspase-specific activities of DEVDase, IETDase and LEHDase were analysed simultaneously with other decisive events of cell death. Through simultaneous analysis of caspase activation by FRET ratio change coupled with detection of mitochondrial membrane potential loss or superoxide generation, we identified several antitumor agents that induced caspase activation with or without membrane potential loss or superoxide generation. Also, cells that escaped the initial drug-induced caspase activation could be easily followed up for defining long term fate. Employing such a revisit imaging strategy of the same area, we have tracked the caspase surviving fractions with multiple drugs and its subsequent response to retreatment, revealing drug-dependent diverging fate of surviving cells. This thereby indicates towards a complex control of drug induced tumor resistance. The technique described here has wider application in both screening of compound libraries as well as in defining apoptotic pathways by linking multiple signaling to identify non-classical apoptosis inducing agents, the greatest advantage being that the high content information obtained are from individual cells rather than being population based.
机译:绿色荧光蛋白技术领域的最新进展与显微成像相结合,在以高时空分辨率确定和解剖凋亡的亚细胞变化方面做出了重要贡献。尽管使用EGFP和相关技术进行的基于单细胞的研究已经提供了有价值的细胞凋亡起始和分级变化信息,但尚未将其用于基于多参数细胞的实时分析中,以高通量方式进行可能的药物筛选或途径定义。在这里,我们已经开发出了多种表达FRET传感器的癌细胞系,这些传感器用于主动胱天蛋白酶,并使其适用于高通量活细胞比例成像,从而能够进行基于高含量图像的多参数分析。共聚焦受体漂白以及宽视野FRET成像证实了系统检测活细胞caspase活化的敏感性。同时分析了DEVDase,IETDase和LEHDase的多种半胱天冬酶特异性活性以及其他决定性的细胞死亡事件。通过同时通过FRET比率变化对caspase激活进行分析,并检测线粒体膜电位损失或超氧化物生成,我们确定了几种诱导caspase激活的抗肿瘤药物,无论是否存在膜电位损失或超氧化物生成。同样,逃脱了最初由药物诱导的胱天蛋白酶激活的细胞可以很容易地被追踪以确定长期的命运。使用相同区域的这种重访成像策略,我们用多种药物追踪了caspase的存活分数及其对再治疗的后续反应,揭示了药物依赖性存活细胞的命运。因此,这表明对药物诱导的肿瘤抗性的复杂控制。通过连接多个信号以识别非经典的细胞凋亡诱导剂,此处描述的技术在化合物库的筛选以及定义凋亡途径中具有更广泛的应用,最大的优势是获得的高含量信息来自单个细胞而不是以人口为基础。

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