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通过图像细胞术对荧光原位杂交信号进行定量分析。

Quantification of fluorescence in situ hybridization signals by image cytometry.

作者信息

Nederlof P M, van der Flier S, Verwoerd N P, Vrolijk J, Raap A K, Tanke H J

机构信息

Sylvius Laboratory, Department of Cytochemistry and Cytometry, University of Leiden, The Netherlands.

出版信息

Cytometry. 1992;13(8):846-52. doi: 10.1002/cyto.990130807.

Abstract

In this study we aimed at the development of a cytometric system for quantification of specific DNA sequences using fluorescence in situ hybridization (ISH) and digital imaging microscopy. The cytochemical and cytometric aspects of a quantitative ISH procedure were investigated, using human peripheral blood lymphocyte interphase nuclei and probes detecting high copy number target sequences as a model system. These chromosome-specific probes were labeled with biotin, digoxigenin, or fluorescein. The instrumentation requirements are evaluated. Quantification of the fluorescence ISH signals was performed using an epi-fluorescence microscope with a multi-wavelength illuminator, equipped with a cooled charge couple device (CCD) camera. The performance of the system was evaluated using fluorescing beads and a homogeneously fluorescing specimen. Specific image analysis programs were developed for the automated segmentation and analysis of the images provided by ISH. Non-uniform background fluorescence of the nuclei introduces problems in the image analysis segmentation procedures. Different procedures were tested. Up to 95% of the hybridization signals could be correctly segmented using digital filtering techniques (min-max filter) to estimate local background intensities. The choice of the objective lens used for the collection of images was found to be extremely important. High magnification objectives with high numerical aperture, which are frequently used for visualization of fluorescence, are not optimal, since they do not have a sufficient depth of field. The system described was used for quantification of ISH signals and allowed accurate measurement of fluorescence spot intensities, as well as of fluorescence ratios obtained with double-labeled probes.

摘要

在本研究中,我们旨在开发一种细胞计数系统,用于使用荧光原位杂交(ISH)和数字成像显微镜对特定DNA序列进行定量分析。以人外周血淋巴细胞间期核和检测高拷贝数靶序列的探针作为模型系统,研究了定量ISH程序的细胞化学和细胞计数方面。这些染色体特异性探针用生物素、地高辛或荧光素标记。对仪器要求进行了评估。使用配备冷却电荷耦合器件(CCD)相机的多波长落射荧光显微镜对荧光ISH信号进行定量。使用荧光微球和均匀荧光样本对系统性能进行了评估。开发了特定的图像分析程序,用于对ISH提供的图像进行自动分割和分析。细胞核不均匀的背景荧光在图像分析分割过程中带来了问题。测试了不同的程序。使用数字滤波技术(最小-最大滤波器)估计局部背景强度,高达95%的杂交信号能够被正确分割。发现用于采集图像的物镜的选择极其重要。常用于荧光可视化的具有高数值孔径的高倍物镜并非最佳选择,因为它们没有足够的景深。所描述的系统用于ISH信号的定量分析,能够准确测量荧光斑点强度以及用双标记探针获得的荧光比率。

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