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Label-free detection and dynamic monitoring of drug-induced intracellular vesicle formation enabled using a 2-dimensional matched filter

机译:使用二维匹配滤镜实现无标签检测和动态监测药物诱导的细胞内囊泡形成

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摘要

Analysis of vesicle formation and degradation is a central issue in autophagy research and microscopy imaging is revolutionizing the study of such dynamic events inside living cells. A limiting factor is the need for labeling techniques that are labor intensive, expensive, and not always completely reliable. To enable label-free analyses we introduced a generic computational algorithm, the label-free vesicle detector (LFVD), which relies on a matched filter designed to identify circular vesicles within cells using only phase-contrast microscopy images. First, the usefulness of the LFVD is illustrated by presenting successful detections of autophagy modulating drugs found by analyzing the human colorectal carcinoma cell line HC T116 exposed to each substance among 1266 pharmacologically active compounds. Some top hits were characterized with respect to their activity as autophagy modulators using independent in vitro labeling of acidic organelles, detection of LC3-II protein, and analysis of the autophagic flux. Selected detection results for 2 additional cell lines (DLD1 and RKO) demonstrate the generality of the method. In a second experiment, label-free monitoring of dose-dependent vesicle formation kinetics is demonstrated by recorded detection of vesicles over time at different drug concentrations. In conclusion, label-free detection and dynamic monitoring of vesicle formation during autophagy is enabled using the LFVD approach introduced.
机译:囊泡形成和降解的分析是自噬研究的中心问题,而显微镜成像正在彻底改变对活细胞内部此类动态事件的研究。一个限制因素是需要劳动力密集,昂贵且并不总是完全可靠的标签技术。为了实现无标签分析,我们引入了通用计算算法,即无标签囊泡检测器(LFVD),该算法依赖于匹配的滤波器,该滤波器设计为仅使用相差显微镜图像识别细胞内的圆形囊泡。首先,通过介绍成功的自噬调节药物的检测来说明LFVD的有用性,该药物是通过分析暴露于1266种药理活性化合物中每种物质的人结直肠癌细胞系HC T116而发现的。使用独立的体外酸性细胞器标记,LC3-II蛋白的检测以及自噬通量的分析,对一些热门产品的自噬调节剂活性进行了表征。对另外2个细胞系(DLD1和RKO)的选定检测结果证明了该方法的普遍性。在第二个实验中,通过在不同药物浓度下随时间记录的囊泡检测,证明了对剂量依赖性囊泡形成动力学的无标记监测。总之,使用引入的LFVD方法可实现自噬过程中无标签检测和动态监测囊泡形成。

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