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An infra-red light-transmitting aperture controller for use in single-cell fluorescence photometry

机译:用于单细胞荧光光度法的红外透光孔径控制器

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Photometric techniques are commonly used to monitor the output from fluorescent indicators during the study of cellular signalling. At the single-cell level, the region of interest is normally set by a variable aperture placed within the microscope emission pathway. The present study reports an improved aperture controller which adjusts the area for fluorescence measurement, whilst allowing objects throughout the field of view to be continuously monitored using infra-red illumination. A rectangular aperture is selected by four 715-nm long-pass glass filters which block >99.9% of the fluorescence emission at 480-600nm. A 780-nm long-pass glass filter is used to provide infra-red illumination which does not interfere with the fluorescence signal, yet is detectable by a standard CCD camera, This allows detection of morphological events throughout the field of view and facilitates manipulation of extracellular pipettes, without interruption to a single-cell fluorescence recording. The infra-red light-transmitting controller is suitable for use with a range of other fluorescent indicators, including those routinely used to detect Ca2+, Cl-, Na+ and pH. Data are presented which demonstrate the use of this controller to measure ADP-evoked [Ca2+](i) increases in single human erythroleukaemia cells loaded with the Ca2+ indicator fura-2, [References: 16]
机译:在细胞信号研究期间,光度技术通常用于监视荧光指示剂的输出。在单细胞水平上,感兴趣的区域通常由放置在显微镜发射路径内的可变孔径设置。本研究报告了一种改进的光圈控制器,该控制器可调节荧光测量区域,同时允许使用红外照明连续监视整个视场中的物体。通过四个715-nm长通玻璃滤光片选择一个矩形孔径,该滤光片在480-600nm处阻挡大于99.9%的荧光发射。 780 nm长通玻璃滤光片用于提供红外照明,该照明不会干扰荧光信号,但可以通过标准CCD摄像机检测到。这可以检测整个视场中的形态事件,并有助于操纵移液器,不中断单细胞荧光记录。红外光传输控制器适用于一系列其他荧光指示剂,包括常规用于检测Ca2 +,Cl-,Na +和pH的那些指示剂。呈现的数据表明,使用该控制器测量装载了Ca2 +指示剂fura-2的单个人红白血病细胞中ADP诱发的[Ca2 +](i)升高,[参考文献:16]

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