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扫描荧光显微镜是定量荧光细胞分析的一种替代方法。

Scanning fluorescent microscopy is an alternative for quantitative fluorescent cell analysis.

作者信息

Varga Viktor Sebestyén, Bocsi József, Sipos Ferenc, Csendes Gábor, Tulassay Zsolt, Molnár Béla

机构信息

Hungarian Academy of Sciences, Clinical Gastroenterology Research Unit, Budapest, Hungary.

出版信息

Cytometry A. 2004 Jul;60(1):53-62. doi: 10.1002/cyto.a.20027.

Abstract

BACKGROUND

Fluorescent measurements on cells are performed today with FCM and laser scanning cytometry. The scientific community dealing with quantitative cell analysis would benefit from the development of a new digital multichannel and virtual microscopy based scanning fluorescent microscopy technology and from its evaluation on routine standardized fluorescent beads and clinical specimens.

METHODS

We applied a commercial motorized fluorescent microscope system. The scanning was done at 20 x (0.5 NA) magnification, on three channels (Rhodamine, FITC, Hoechst). The SFM (scanning fluorescent microscopy) software included the following features: scanning area, exposure time, and channel definition, autofocused scanning, densitometric and morphometric cellular feature determination, gating on scatterplots and frequency histograms, and preparation of galleries of the gated cells. For the calibration and standardization Immuno-Brite beads were used.

RESULTS

With application of shading compensation, the CV of fluorescence of the beads decreased from 24.3% to 3.9%. Standard JPEG image compression until 1:150 resulted in no significant change. The change of focus influenced the CV significantly only after +/-5 microm error.

CONCLUSIONS

SFM is a valuable method for the evaluation of fluorescently labeled cells.

摘要

背景

如今,细胞荧光测量是通过流式细胞术(FCM)和激光扫描细胞术进行的。从事定量细胞分析的科学界将受益于一种基于新型数字多通道和虚拟显微镜的扫描荧光显微镜技术的开发及其在常规标准化荧光微球和临床标本上的评估。

方法

我们应用了一种商用电动荧光显微镜系统。扫描在20倍(0.5数值孔径)放大倍数下进行,涉及三个通道(罗丹明、异硫氰酸荧光素、 Hoechst)。扫描荧光显微镜(SFM)软件具有以下功能:扫描区域、曝光时间和通道定义、自动聚焦扫描、光密度和形态学细胞特征测定、散点图和频率直方图上的门控以及门控细胞图库的制备。为了进行校准和标准化,使用了免疫亮珠。

结果

应用阴影补偿后,微球荧光的变异系数(CV)从24.3%降至3.9%。标准JPEG图像压缩至1:150时,未产生显著变化。仅在聚焦误差达到±5微米后,聚焦变化才会对变异系数产生显著影响。

结论

扫描荧光显微镜是评估荧光标记细胞的一种有价值的方法。

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