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弹道式传递电压敏感染料,用于快速记录大鼠脑片单个神经元膜电位变化。

Biolistic delivery of voltage-sensitive dyes for fast recording of membrane potential changes in individual neurons in rat brain slices.

机构信息

Institute of Higher Nervous Activity and Neurophysiology of Russian Academy of Sciences, Butlerova 5A, Moscow 117485, Russian Federation.

出版信息

J Neurosci Methods. 2013 Jan 15;212(1):17-27. doi: 10.1016/j.jneumeth.2012.09.008. Epub 2012 Sep 13.

Abstract

Optical recording of membrane potential changes with fast voltage-sensitive dyes (VSDs) in neurons is one of the very few available methods for studying the generation and propagation of electrical signals to the distant compartments of excitable cells. The more lipophilic is the VSD, the better signal-to-noise ratio of the optical signal can be achieved. At present there are no effective ways to deliver water-insoluble dyes into the membranes of live cells. Here, we report a possibility to stain individual live neurons with highly lipophilic VSDs in acute brain slices using biolistic delivery. We tested four ANEP-based VSDs with different lipophilic properties and showed their ability to stain single neurons in a slice area of up to 150 μm in diameter after being delivered by a biolistic apparatus. In the slices of neocortex and hippocampus, the two most lipophilic dyes, di-8-ANEPPS and di-12-ANEPPQ, showed cell-specific loading and Golgi-like staining patterns with minimal background fluorescence. Simultaneous patch-clamp and optical recording of biolistically stained neurons demonstrated a good match of optical and electrical signals both for spontaneous APs (action potentials) and stimulus-evoked events. Our results demonstrate the high efficiency of a fast and targeted method of biolistic delivery of lipophilic VSDs for optical signals recording from mammalian neurons in vitro.

摘要

用快速电压敏感染料(VSD)记录神经元膜电位变化是研究可兴奋细胞远距离隔室电信号产生和传播的少数几种方法之一。VSD 的亲脂性越高,光学信号的信噪比就越好。目前,还没有有效的方法将不溶于水的染料递送到活细胞的膜内。在这里,我们报告了一种使用弹道式输送在急性脑切片中用高亲脂性 VSD 对单个活神经元进行染色的可能性。我们测试了四种基于 ANEP 的 VSD,它们具有不同的亲脂性,并展示了它们在通过弹道装置输送后在直径达 150μm 的切片区域内对单个神经元进行染色的能力。在新皮层和海马体的切片中,两种最亲脂性的染料,di-8-ANEPPS 和 di-12-ANEPPQ,显示出细胞特异性的负载和类似于高尔基体的染色模式,背景荧光最小。同时进行的弹道式染色神经元的膜片钳和光学记录表明,光学和电信号之间具有良好的匹配性,无论是自发的 APs(动作电位)还是刺激诱发的事件。我们的结果表明,弹道式输送快速且靶向的亲脂性 VSD 方法在体外记录哺乳动物神经元的光学信号方面具有高效率。

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