首页> 外文期刊>Journal of Immunological Methods >Simultaneous analysis of surface marker expression and cell cycle progression in human peripheral blood mononuclear cells.
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Simultaneous analysis of surface marker expression and cell cycle progression in human peripheral blood mononuclear cells.

机译:同时分析人外周血单核细胞中的表面标志物表达和细胞周期进程。

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摘要

One method for examining cell cycle kinetics by flow cytometry uses continuous DNA labeling with bromodeoxyuridine (BrdU), a thymidine analogue. Upon incorporation into DNA, BrdU causes stoichiometric quenching of the DNA fluorochrome Hoechst 33258. After counterstaining with a secondary DNA fluorochrome (e.g., ethidium bromide), the analyst can distinguish cells in different phases of the cell cycle over a number of mitotic cycles with flow cytometry. In this report, we describe a modification of the flow cytometric BrdU-Hoechst assay that allows combined analysis of cell proliferation and immunophenotyping at the single cell level. To demonstrate an application of this method, human peripheral blood mononuclear cells were stimulated with tetanus toxoid or interleukin-2 for up to 6 days in the presence of BrdU, harvested, and immunostained for the cell surface markers CD3, CD4, CD8, CD14, CD19, and the cytokine receptor, CCR5. We used four-color flow cytometry analyses to simultaneously measure cell proliferation and surface marker expression, for the purpose of immunophenotyping and identifying specific cell subsets responding to antigen stimulation. Our successful application of this method suggests that it may be used to study immune responses at the molecular and cellular level and to identify mechanisms of immune system modulation.
机译:通过流式细胞术检查细胞周期动力学的一种方法是使用胸苷类似物溴脱氧尿苷(BrdU)进行连续DNA标记。掺入DNA后,BrdU导致DNA荧光染料Hoechst 33258的化学计量猝灭。用次级DNA荧光染料(例如溴化乙锭)复染后,分析人员可以在多个有丝分裂周期的流动过程中区分细胞周期不同阶段的细胞细胞计数。在本报告中,我们描述了流式细胞术BrdU-Hoechst分析的一种改进,它允许在单细胞水平上对细胞增殖和免疫表型进行综合分析。为证明该方法的应用,在破伤风类毒素或白细胞介素2存在BrdU的情况下,将人类外周血单核细胞刺激长达6天,收获并对其细胞表面标志物CD3,CD4,CD8,CD14, CD19和细胞因子受体CCR5。我们使用四色流式细胞仪分析来同时测量细胞增殖和表面标志物表达,以进行免疫表型鉴定和鉴定对抗原刺激有反应的特定细胞亚群。我们对该方法的成功应用表明,该方法可用于研究分子和细胞水平的免疫应答并确定免疫系统调节的机制。

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