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通过相敏流式细胞术分辨来自用具有不同寿命的荧光染料标记的细胞的荧光信号。

Resolution of fluorescence signals from cells labeled with fluorochromes having different lifetimes by phase-sensitive flow cytometry.

作者信息

Steinkamp J A, Crissman H A

机构信息

Los Alamos National Laboratory, New Mexico 87545.

出版信息

Cytometry. 1993;14(2):210-6. doi: 10.1002/cyto.990140214.

Abstract

A flow cytometric method has been developed that uses phase-sensitive detection to separate signals from simultaneous fluorescence emissions in cells labeled with fluorochromes having different fluorescence decay lifetimes. By CHO cells were stained with propidium iodide (PI) and fluorescein isothiocyanate (FITC). These dyes bind to DNA and protein and the fluorescence lifetimes of the bound dyes are 15.0 and 3.6 ns, respectively. Cells were analyzed as they passed through a modulated (sinusoidal) laser excitation beam. Fluorescence was measured using only a long-pass filter to block scattered laser excitation light and a single photomultiplier tube detector. The fluorescence detector output signals were processed by dual-channel phase-sensitive detection electronics and the phase-resolved PI and FITC signals were displayed as frequency distribution histograms and bivariate plots. By shifting the phase of one detector channel reference signal by pi/2 + phi 1 degrees and the phase of the other detector channel reference signal by - pi/2 + phi 2 degrees, where phi 1 and phi 2 are the phase shifts associated with the PI and FITC lifetimes, the PI and FITC signals were separately resolved at their respective phase-sensitive detector outputs. This technology is also applicable to suppressing background interferences caused by cellular autofluorescence, unbound/free dye, nonspecific dye binding, and Raman and Rayleigh scattering.

摘要

已经开发出一种流式细胞术方法,该方法使用相敏检测来分离用具有不同荧光衰减寿命的荧光染料标记的细胞中同时发生的荧光发射信号。用碘化丙啶(PI)和异硫氰酸荧光素(FITC)对CHO细胞进行染色。这些染料与DNA和蛋白质结合,结合染料的荧光寿命分别为15.0和3.6纳秒。当细胞通过调制(正弦)激光激发束时对其进行分析。仅使用一个长通滤光片来阻挡散射的激光激发光,并使用单个光电倍增管探测器测量荧光。荧光探测器输出信号由双通道相敏检测电子设备处理,并且相位分辨的PI和FITC信号显示为频率分布直方图和双变量图。通过将一个探测器通道参考信号的相位偏移π/2 + φ1度,将另一个探测器通道参考信号的相位偏移-π/2 + φ2度,其中φ1和φ2是与PI和FITC寿命相关的相移,PI和FITC信号在它们各自的相敏探测器输出处被分别解析。该技术也适用于抑制由细胞自发荧光、未结合/游离染料、非特异性染料结合以及拉曼和瑞利散射引起的背景干扰。

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