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首页> 外文期刊>Journal of Immunological Methods >Discrimination of damaged/dead cells by propidium iodide uptake in immunofluorescently labeled populations analyzed by phase-sensitive flow cytometry.
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Discrimination of damaged/dead cells by propidium iodide uptake in immunofluorescently labeled populations analyzed by phase-sensitive flow cytometry.

机译:通过相敏流式细胞术分析免疫荧光标记的人群中碘化丙锭的摄取来区分受损/死细胞。

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摘要

We report a flow cytometric fluorescence lifetime-based method to discriminate damaged/dead from viable cells in immunofluorescently labeled populations using propidium iodide as a dye-exclusion viability probe. Fluorescence signals from propidium iodide and the anti-thymus cell-surface immunofluorescence marker fluorochromes, phycoerythrin and phycoerythrin/Texas Red (tandem conjugate), which have overlapping emission spectra with propidium iodide, are resolved based on differences in their fluorescence emission lifetimes using phase-sensitive detection. Mouse thymus cell samples were first labeled separately with anti-Thy 1.2 antibody directly conjugated to phycoerythrin and to phycoerythrin/Texas Red and propidium iodide. Labeled cells were then analyzed to determine the lifetimes of the immunofluorescence markers and propidium iodide. Based on these results, rat and mouse thymocytes labeled with anti-Thy 1.1 conjugated to phycoerythrin and anti-Thy 1.2 conjugated to phycoerythrin/Texas Red, respectively, were suspended in phosphate buffered saline containing propidium iodide, and were analyzed as they passed through a flow chamber and crossed a high-frequency, intensity-modulated (sinusoidal) laser excitation beam. The resulting immunofluorescence and propidium iodide signals were resolved based on differences in fluorescence lifetimes expressed as phase shifts using phase-sensitive detection and displayed as frequency distribution histograms and bivariate contour diagrams. This technology provides a new method to resolve immunofluorescence and propidium iodide signals from overlapping fluorescence emission spectra and a flow cytometric lifetime-based technique to quantify damaged/dead cells in immunofluorescence studies.
机译:我们报告了一种基于流式细胞仪基于荧光寿命的方法,使用碘化丙锭作为染料排斥活性探针,可以从免疫荧光标记的人群中区分出活细胞中的受损/死细胞。碘化丙啶和抗胸腺细胞表面免疫荧光标记荧光染料,藻红蛋白和藻红蛋白/德州红(串联共轭物)的荧光信号与碘化丙啶重叠,可以根据相分离的荧光发射寿命的差异来分辨。灵敏的检测。首先用直接与藻红蛋白和藻红蛋白/得克萨斯红和碘化丙啶偶联的抗Thy 1.2抗体分别标记小鼠胸腺细胞样品。然后分析标记的细胞,以确定免疫荧光标记和碘化丙啶的寿命。根据这些结果,将分别标记有抗藻红蛋白和抗藻红蛋白/德克萨斯红的抗Thy 1.1和抗Thy 1.2标记的大鼠和小鼠胸腺细胞悬浮在含碘化丙啶的磷酸盐缓冲液中,并进行分析。流动腔并穿过高频,强度调制(正弦)激光激发光束。产生的免疫荧光和碘化丙啶信号基于使用相敏检测表示为相移的荧光寿命差异进行分辨,并显示为频率分布直方图和双变量等高线图。这项技术提供了一种从重叠的荧光发射光谱中解析免疫荧光和碘化丙啶信号的新方法,以及一种基于流式细胞术基于生命的技术来量化免疫荧光研究中受损/死细胞的技术。

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