Steinkamp J A, Orlicky D A, Crissman H A
J Histochem Cytochem. 1979 Jan;27(1):273-6. doi: 10.1177/27.1.374585.
An improved dual-laser flow cytometric system for quantitative analysis and sorting of mammalian cells has been developed using a low-power argon and high-power krypton laser as illumination sources, thus permitting the excitation of fluorescent dyes having absorption regions ranging from the ultraviolet to infrared. Cells stained in liquid suspension with fluorescent dyes enter a flow chamber where they intersect two spatially separated laser beams. Separate pairs of quartz beam-shaping optics focus each beam onto the cell stream. Electro-optical sensors measure fluorescence and light scatter signals from cells that are processed electronically and displayed as frequency distribution histograms. Cells also can be electronically separated and microscopically identified. The ease and versatility of operation designed into this system represent a marked technological improvement for dual-laser excited flow systems. Details of this instrument are described along with illustrative examples of cells stained with mithramycin and rhodamine and analyzed for DNA content, total protein, and nuclear and cytoplasmic diameter.
已开发出一种改进的双激光流式细胞仪系统,用于哺乳动物细胞的定量分析和分选。该系统使用低功率氩激光器和高功率氪激光器作为照明源,从而能够激发吸收区域从紫外到红外的荧光染料。用荧光染料在液体悬浮液中染色的细胞进入流动室,在那里它们与两束空间分离的激光束相交。单独的一对石英光束整形光学器件将每束光聚焦到细胞流上。电光传感器测量来自细胞的荧光和光散射信号,这些信号经过电子处理并显示为频率分布直方图。细胞也可以进行电子分离并通过显微镜识别。该系统设计的操作简便性和多功能性代表了双激光激发流动系统的显著技术进步。本文描述了该仪器的详细信息,并给出了用光辉霉素和罗丹明染色并分析其DNA含量、总蛋白以及细胞核和细胞质直径的细胞的示例。