Thayer S A, Sturek M, Miller R J
Department of Pharmacological and Physiological Sciences, University of Chicago, IL 60637.
Pflugers Arch. 1988 Jul;412(1-2):216-23. doi: 10.1007/BF00583753.
Fluorescent indicator molecules, such as fura-2, are useful probes for studying the concentrations of ions in single cells. A key feature of these fluorescent dyes is the shift in their excitation spectra upon binding the ion, thus making alternate excitation from two wavelengths desirable. In this report we describe an inexpensive system for making simultaneous electrophysiological and dual excitation fluorescence measurements using equipment much of which is available in a typical biophysical laboratory. In order to synchronize the fluorescence signal with the appropriate excitation wavelength we devised a simple computer program which uses the output of photodiodes placed in the excitation beam to determine which wavelength is illuminating the cell. We also describe the use of a liquid light guide to transmit excitation illumination from the light source to the epifluorescence port of the microscope in order to isolate a perfusion chamber from light, electrical noise and vibration. A sensitive light detection system was assembled using a photomultiplier tube and discriminator that took advantage of sampling single unit events obtained with photon counting rather than the analog of anode current. However, rather than employing a sophisticated and expensive photon counting system, a filter was used to integrate the signal so that an analog output could be presented to a multichannel analog to digital converter commonly used for electrophysiological recordings.(ABSTRACT TRUNCATED AT 250 WORDS)
荧光指示剂分子,如fura-2,是用于研究单细胞中离子浓度的有用探针。这些荧光染料的一个关键特性是它们在结合离子后激发光谱会发生变化,因此需要从两个波长进行交替激发。在本报告中,我们描述了一种廉价的系统,该系统使用典型生物物理实验室中大多可用的设备,同时进行电生理和双激发荧光测量。为了使荧光信号与适当的激发波长同步,我们设计了一个简单的计算机程序,该程序利用放置在激发光束中的光电二极管的输出,来确定哪个波长正在照射细胞。我们还描述了使用液体光导将激发光从光源传输到显微镜的落射荧光端口,以便将灌注室与光、电噪声和振动隔离开来。使用光电倍增管和鉴别器组装了一个灵敏的光检测系统,该系统利用对通过光子计数获得的单个单元事件进行采样,而不是阳极电流的模拟值。然而,不是采用复杂且昂贵的光子计数系统,而是使用一个滤波器对信号进行积分,以便将模拟输出呈现给通常用于电生理记录的多通道模数转换器。(摘要截短于250字)