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Flow cytometric lifetime-based cell viability assay using propidium iodide

机译:使用碘化丙锭的流式细胞术寿命的细胞活力测定

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Assays which discriminate and enumerate dying or dead cells are important in various types of cellular studies. In many instances, there is a need to identify dead cells that interfere with fluorescent probes which are used to measure functional and physiological properties in viable cells. For example, dead cells can introduce analytical errors arising from 1) nonspecific uptake of fluorescent probes, leading to erroneous percentages of positive labeled cells, 2) increased autofluorescence, and 3) altered antigen expression. The ability to detect dead cells is also of importance in determining the effectiveness of cytotoxic agents. Propidium iodide (PI) exclusion, which is analogous to the non-fluorescent trypan blue dye test for viability, is used extensively in flow cytometry assays. However, the use of PI can potentially limit the application of additional fluorescent probes due to spectral overlap of the probe with PI. In this report we present phase-resolved fluorescence studies on rat and murine thymus cells labeled with phycoerythrin-antiThy 1.1 and phycoerythrin/Texas Red-antiThy 1.2 immunofluorescence markers, respectively, and PI. Overlapping emission spectra are resolved based on differences in fluorescence lifetimes of the probes and PI. These studies demonstrate a new lifetime-based viability method for use in analysis of immunofluorescent probes and for assaying the dynamics of cell killing.
机译:鉴别和枚举染色或死细胞的测定在各种细胞研究中是重要的。在许多情况下,需要鉴定干扰荧光探针的死细胞,其用于测量活细胞中的功能和生理性质。例如,死细胞可以引入从1)的分析误差引起的荧光探针的非特异性摄取,导致阳性标记细胞的错误百分比,2)增加自发荧光和3)改变的抗原表达。检测死细胞的能力在确定细胞毒性剂的有效性方面也很重要。碘化丙啶(PI)排除,其类似于非荧光网蓝染料试验,用于流式细胞术测定。然而,由于探针的光谱重叠具有PI,使用PI可能会限制额外的荧光探针的应用。在本报告中,我们分别存在对植物和植物植物和Phycooerythrin /德克萨斯红抗型1.2免疫荧光标记物标记的大鼠和鼠胸腺细胞的相位分辨荧光研究。基于探针和PI的荧光寿命的差异来解析重叠的发射光谱。这些研究表明,用于分析免疫荧光探针的新型基于寿命的活力方法,并测定细胞杀伤动力学。

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