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Picosecond fluorescence lifetime imaging microscope for imaging of living glioma cells

机译:皮秒荧光寿命成像显微镜,用于活神经胶质瘤细胞成像

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In this communication, we report the imaging of living glioma cells using fluorescence lifetime imaging (FLIM) technique. The growing interests in developing novel techniques for diagnosis and minimally invasive therapy of brain tumor have led to microscopic studies of subcellular structures and intracellular processes in glioma cells. Fluorescence microscopy has been used with a number of exogenous molecular probes specific for certain intracellular structures such as mitochondria, peripheral benzodiazepine receptor (PBR), and calcium concentration. When probes with overlapping emission spectra being used, separate samples are required to image each probe individually under conventional fluorescence microscopy. We have developed a wide-field FLIM microscope that uses fluorescence lifetime as an additional contrast for resolving multiple markers in the same essay. The FLIM microscope consists of a violet diode laser and a nitrogen-pumped dye laser to provide tunable sub-nanosecond excitation from UV to NIR. The detection system is based on a time-gated ICCD camera with minimum 80 ps gate width. The performance of the system was evaluated using fluorescence dyes with reported lifetime values. Living rat glioma C6 cells were stained with JC-1 and Rhodamine 123. FLIM images were acquired and their lifetimes in living cells were found in good agreements with values measured in solutions by a time-domain fluorescence spectrometer. These results indicate that imaging of glioma cells using FLIM can resolve multiple spectrally-overlapping probes and provide quantitative functional information about the intracellular environment.
机译:在此通讯中,我们报告了使用荧光寿命成像(FLIM)技术成像的活神经胶质瘤细胞的成像。对开发用于脑肿瘤的诊断和微创治疗的新技术的兴趣日益增长,导致对神经胶质瘤细胞亚细胞结构和细胞内过程的微观研究。荧光显微镜已用于许多特定于某些细胞内结构(例如线粒体,外周苯二氮卓类受体(PBR)和钙浓度)的外源分子探针。当使用具有重叠发射光谱的探针时,需要单独的样品才能在常规荧光显微镜下分别对每个探针成像。我们已经开发了一种宽视野的FLIM显微镜,该显微镜使用荧光寿命作为附加的对比来解析同一篇论文中的多个标记。 FLIM显微镜由紫光二极管激光器和氮泵浦染料激光器组成,可提供从UV到NIR的亚纳秒可调激发。该检测系统基于具有最小80 ps栅极宽度的时间门控ICCD相机。使用具有报告寿命值的荧光染料评估系统的性能。用JC-1和若丹明123对活的大鼠神经胶质瘤C6细胞进行染色。采集了FLIM图像,发现它们在活细胞中的寿命与时域荧光光谱仪在溶液中测得的值吻合良好。这些结果表明,使用FLIM对神经胶质瘤细胞进行成像可以分辨出多个光谱重叠的探针,并提供有关细胞内环境的定量功能信息。

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