Wilms Christian D, Schmidt Hartmut, Eilers Jens
Leipzig University, Carl-Ludwig-Institute for Physiology, Liebigstr. 27, 04103 Leipzig, Germany.
Cell Calcium. 2006 Jul;40(1):73-9. doi: 10.1016/j.ceca.2006.03.006. Epub 2006 May 9.
Two-photon microscopy (TPM) revolutionized Ca2+ imaging by allowing recordings in the depth of intact tissue and live organisms. A serious limitation in TPM, however, is the lack of an accurate and straightforward approach for the quantification of Ca2+ signals, an ability that became an invaluable tool in fluorescence microscopy. Here, we present time-correlated fluorescence lifetime imaging (tcFLIM) as a ratiometric method for the quantification of Ca2+ signals in TPM. The fluorescence lifetime of the Ca2+-indicator dye Oregon Green BAPTA-1 (OGB-1) can be recorded using the approximately 80 MHz excitation pulses utilized in TPM. It shows a Ca2+ dependence that can be explained by the Ca2+-affinity, spectral properties and purity of the dye. Pixel-wise lifetime recordings, controlled by a laser-scanning microscope, allowed quantitative Ca2+ imaging in full-frame and linescan mode. Although we focused on the high-affinity Ca2+ indicator OGB-1, our tcFLIM-based quantification is applicable to other Ca2+ dyes and to fluorescence indicators in general.
双光子显微镜(TPM)通过实现对完整组织和活生物体深部的记录,给钙离子成像带来了变革。然而,TPM存在一个严重的局限性,即缺乏一种准确且直接的方法来定量钙离子信号,而这种能力在荧光显微镜中已成为一种非常宝贵的工具。在此,我们提出时间相关荧光寿命成像(tcFLIM)作为一种用于在TPM中定量钙离子信号的比率方法。利用TPM中约80 MHz的激发脉冲,可以记录钙离子指示剂染料俄勒冈绿BAPTA-1(OGB-1)的荧光寿命。它表现出对钙离子的依赖性,这可以由染料的钙离子亲和力、光谱特性和纯度来解释。通过激光扫描显微镜控制的逐像素寿命记录,能够在全帧和线扫描模式下进行定量钙离子成像。尽管我们专注于高亲和力钙离子指示剂OGB-1,但我们基于tcFLIM的定量方法一般适用于其他钙离子染料以及荧光指示剂。