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流式细胞术中荧光偏振测量的双光束自动补偿

Double-beam autocompensation for fluorescence polarization measurements in flow cytometry.

作者信息

Beisker W, Eisert W G

出版信息

Biophys J. 1985 May;47(5):607-12. doi: 10.1016/S0006-3495(85)83956-4.

Abstract

The degree of depolarization of fluorescent light emitted from an organic dye, which is used as molecular probe, is a powerful tool in probing the microenvironment. By fluorescence depolarization the macromolecular structure can be investigated as well as the the mobility of the marker molecule itself or of the complex formed by the probe. Additional information such as energy transfer rates, donor-acceptor distances, and orientations are also measurable. These data are of particular interest if they can be measured from whole cells. Using flow cytometry, we can analyze a large number of cells with high statistical significance in a short period of time. We describe a newly developed double-beam epi-illumination arrangement for fluorescence polarization measurements that uses an autocompensation technique. This new technique permits the various depolarizing effects within the optical as well as the electronic components of the system to be continually compensated for on a cell by cell basis. Simultaneous measurements of other cell parameters for cell cycle analysis by total fluorescence intensity remains possible. The sensitivity of the system to measure polarization was determined as +/- 0.006 p (0 less than or equal to p less than or equal to 0.5 in isotropic media), which amounts to +/- 1.2% of the maximum p value. Polarization data for latex microspheres plotted in the histogram mode were measured with a standard deviation of 0.006, which proved the high resolution and the high performance of the system.

摘要

用作分子探针的有机染料发出的荧光的去极化程度,是探测微环境的有力工具。通过荧光去极化,可以研究大分子结构以及标记分子本身或探针形成的复合物的流动性。诸如能量转移速率、供体-受体距离和方向等额外信息也可测量。如果能从整个细胞中测量这些数据,将特别有意义。使用流式细胞仪,我们可以在短时间内以高统计学显著性分析大量细胞。我们描述了一种新开发的用于荧光偏振测量的双光束落射照明装置,该装置采用了自动补偿技术。这项新技术允许在逐个细胞的基础上不断补偿系统光学和电子组件内的各种去极化效应。通过总荧光强度同时测量其他细胞参数以进行细胞周期分析仍然可行。该系统测量偏振的灵敏度确定为±0.006 p(在各向同性介质中0≤p≤0.5),这相当于最大p值的±1.2%。以直方图模式绘制的乳胶微球的偏振数据测量标准差为0.006,这证明了该系统的高分辨率和高性能。

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