Ross William N, Manita Satoshi
Cold Spring Harb Protoc. 2012 Oct 1;2012(10):1087-91. doi: 10.1101/pdb.prot071480.
Here we describe the use of wide-field charge-coupled device (CCD) camera-based imaging methods to detect the spatial and temporal aspects of calcium release from internal stores in dendrites of neurons in brain slice preparations. This approach is useful for revealing aspects of this signaling system, which is generally invisible to electrical recording. The changes in intracellular calcium ion concentrations, Ca(2+), sometimes occur as large-amplitude, propagating Ca(2+) waves or as much smaller, localized events (sparks). In this protocol, a cell is loaded with an indicator that responds to Ca(2+), waves or sparks are stimulated in the cell, and the spatial and temporal characteristics of calcium release from internal stores in the cell are detected using wide-field CCD camera-based imaging. Such camera systems have some advantages for detecting and analyzing these Ca(2+) changes because the waves are spatially extended and the sparks do not always occur at the same locations.
在此,我们描述了基于宽视野电荷耦合器件(CCD)相机的成像方法在检测脑片制备中神经元树突内钙库释放的空间和时间方面的应用。这种方法对于揭示该信号系统的各个方面很有用,而这通常是电记录所无法察觉的。细胞内钙离子浓度[Ca(2+)]i的变化有时会以大幅度传播的钙波形式出现,或者以小得多的局部事件(钙火花)形式出现。在本实验方案中,细胞被加载一种对Ca(2+)有反应的指示剂,在细胞中激发钙波或钙火花,然后使用基于宽视野CCD相机的成像来检测细胞内钙库释放的钙的空间和时间特征。这种相机系统在检测和分析这些[Ca(2+)]i变化方面具有一些优势,因为钙波在空间上是扩展的,而且钙火花并不总是出现在相同位置。