Roederer M, Murphy R F
Cytometry. 1986 Nov;7(6):558-65. doi: 10.1002/cyto.990070610.
Autofluorescence of cells can be a major portion of the fluorescence signal in many systems, especially when fluorescent conjugates are used to study receptor-ligand systems for which there are less than 70,000 receptors per cell. We have devised a method for the cell-by-cell correction of autofluorescence for flow cytometric data by using an additional parameter to measure and correct for autofluorescence in the fluorescence channel. The principle has been extended to allow simultaneous correction for autofluorescence and dual-fluorescence spillover compensation in samples labeled with two different fluorochromes; all corrections were done in software, making them applicable to any flow cytometer. The autofluorescence correction method was used to analyze the acidification of epidermal growth factor (EGF) by Swiss 3T3 cells. EGF is acidified to pH 6.2 starting two min after labeling, with a half-time for acidification of 45 s.
在许多系统中,细胞的自发荧光可能是荧光信号的主要部分,特别是当使用荧光缀合物来研究每个细胞中受体少于70000个的受体-配体系统时。我们设计了一种方法,通过使用一个额外的参数来测量和校正荧光通道中的自发荧光,从而对流式细胞术数据进行逐个细胞的自发荧光校正。该原理已得到扩展,以允许对用两种不同荧光染料标记的样品中的自发荧光和双荧光溢出补偿进行同时校正;所有校正均在软件中完成,使其适用于任何流式细胞仪。自发荧光校正方法用于分析瑞士3T3细胞对表皮生长因子(EGF)的酸化作用。标记后两分钟开始,EGF被酸化至pH 6.2,酸化半衰期为45秒。