首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Dual video microscopic imaging of membrane potential and cytosolic calcium of immunoidentified embryonic rat cortical cells.
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Dual video microscopic imaging of membrane potential and cytosolic calcium of immunoidentified embryonic rat cortical cells.

机译:免疫鉴定的胚胎大鼠皮层细胞膜电位和胞质钙的双视频显微成像。

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摘要

Membrane potential (MP) and cytosolic Ca2+ (Ca2+(c)) constitute important components involved in the physiological regulation of a myriad of cell functions in eukaryotic organisms. In particular, during development of the central nervous system, both properties are thought to be important in the regulation of cell cycle, cell migration, cell differentiation, cell-cell communication, and naturally occurring cell death. However, obtaining insight into the precise relationship between these two parameters of cell function is relatively limited either by technical difficulties inherent in using electrical recordings of membrane properties in conjunction with optical imaging of single cells or by employing optical imaging of either one or another property alone. Here, we describe in detail a novel strategy to record changes in both MP and Ca2+(c) from many intact single cells in a noninvasive manner using digital video microscopy. This method involves double-loading the cells with voltage- and calcium-sensitive fluorescent indicator dyes, green oxonol, and fura-2, which can be sequentially excited with a mercury arc lamp filtered at appropriate wavelengths and their resulting emissions can be captured with an intensified charged-coupled device camera at 1-s intervals. As an example of the utility of dual-recording strategy, we present data on a distinct functional expression of excitable membrane and cytoplasmic calcium properties in proliferating and differentiating embryonic rat cerebral cortical cells.
机译:膜电位(MP)和胞质Ca2 +(Ca2 +(c))是参与真核生物中众多细胞功能的生理调节的重要组成部分。特别地,在中枢神经系统发育期间,这两种性质都被认为在调节细胞周期,细胞迁移,细胞分化,细胞间通讯和自然发生的细胞死亡中很重要。然而,对细胞功能这两个参数之间精确关系的深入了解相对受限,或者是由于将膜特性的电记录与单个细胞的光学成像结合使用时固有的技术难题,或者仅通过采用一种或另一种特性的光学成像而固有。在这里,我们详细描述了一种新颖的策略,可以使用数字视频显微镜以无创方式记录来自许多完整单个细胞的MP和Ca2 +(c)的变化。该方法包括将电压敏感和钙敏感的荧光指示剂染料,绿色氧代酚和呋喃2双重加载到细胞中,然后可以用在适当波长下过滤的汞弧光灯依次激发,并可以用紫外光捕获捕获的发射光。以1秒的间隔增强电荷耦合设备的摄像头。作为双重记录策略实用性的一个例子,我们提出了在增殖和分化胚胎大鼠大脑皮层细胞中兴奋性膜和胞质钙特性的不同功能表达的数据。

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