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首页> 外文期刊>Scientific reports. >Segmented cell analyses to measure redox states of autofluorescent NAD(P)H, FAD & Trp in cancer cells by FLIM
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Segmented cell analyses to measure redox states of autofluorescent NAD(P)H, FAD & Trp in cancer cells by FLIM

机译:分段细胞分析通过FLIM测量癌细胞中自发荧光NAD(P)H,FAD和Trp的氧化还原状态

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Multiphoton FLIM microscopy offers many opportunities to investigate processes in live cells, tissue and animal model systems. For redox measurements, FLIM data is mostly published by cell mean values and intensity-based redox ratios. Our method is based entirely on FLIM parameters generated by 3-detector time domain microscopy capturing autofluorescent signals of NAD(P)H, FAD and novel FLIM-FRET application of Tryptophan and NAD(P)H-a2%/FAD-a1% redox ratio. Furthermore, image data is analyzed in segmented cells thresholded by 2?×?2 pixel Regions of Interest (ROIs) to separate mitochondrial oxidative phosphorylation from cytosolic glycolysis in a prostate cancer cell line. Hundreds of data points allow demonstration of heterogeneity in response to intervention, identity of cell responders to treatment, creating thereby different sub-populations. Histograms and bar charts visualize differences between cells, analyzing whole cell versus mitochondrial morphology data, all based on discrete ROIs. This assay method allows to detect subtle differences in cellular and tissue responses, suggesting an advancement over means-based analyses.
机译:多光子FLIM显微镜为研究活细胞,组织和动物模型系统中的过程提供了许多机会。对于氧化还原测量,FLIM数据主要通过单元均值和基于强度的氧化还原比发布。我们的方法完全基于通过3探测器时域显微镜捕获NAD(P)H,FAD的自发荧光信号以及色氨酸和NAD(P)H-a2%/ FAD-a1%氧化还原的新型FLIM-FRET应用生成的FLIM参数比。此外,在以2××2个像素感兴趣区域(ROI)为阈值的分段细胞中分析图像数据,以将线粒体氧化磷酸化与前列腺癌细胞系中的胞质糖酵解分开。数百个数据点可显示出对干预的异质性,对治疗的细胞反应者的身份,从而产生了不同的亚群。直方图和条形图可视化细胞之间的差异,分析全细胞与线粒体形态数据,全部基于离散的ROI。这种测定方法可以检测细胞和组织反应中的细微差异,这表明其优于基于均值的分析。

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