Takamatsu T, Minamikawa T, Kawachi H, Fujita S
Department of Pathology, Kyoto Prefectural University of Medicine, Japan.
Cell Struct Funct. 1991 Aug;16(4):341-6. doi: 10.1247/csf.16.341.
We describe here the use of a confocal laser scanning microscope for imaging fast dynamic changes of the intracellular calcium ion concentration ([Ca2+]i) in isolated ventricular cell pairs. The scanning apparatus of our system, paired galvanometer mirrors, can perform narrow band scanning of an area of interest at a high temporal resolution of less than 70 msec per image. The actual [Ca2+]i is obtained directly through the fluorescence intensity of injected fluo-3, which responds to changes of [Ca2+]i in optically sectioned unit volumes of the cell. Images of the calcium wave obtained during propagation between paired cells revealed that the wavefront is constant in shape and propagates at constant velocity without any delay at the cell-to-cell junction. The confocal laser scanning microscope with depth-discriminating ability is a valuable tool for taking pictures of the sequence of biological events in living cells.
我们在此描述了共聚焦激光扫描显微镜在成像分离的心室细胞对中细胞内钙离子浓度([Ca2+]i)快速动态变化方面的应用。我们系统的扫描装置,即成对的检流计镜,能够以每张图像小于70毫秒的高时间分辨率对感兴趣区域进行窄带扫描。实际的[Ca2+]i是通过注入的fluo-3的荧光强度直接获得的,fluo-3对细胞光学切片单位体积内[Ca2+]i的变化做出反应。在成对细胞之间传播过程中获得的钙波图像显示,波前形状恒定,以恒定速度传播,在细胞间连接处没有任何延迟。具有深度分辨能力的共聚焦激光扫描显微镜是拍摄活细胞中生物事件序列图片的宝贵工具。