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Measuring extracellular ion gradients from single channels with ion-selective microelectrodes.使用离子选择性微电极从单通道测量细胞外离子梯度。
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Fabrication and use of high-speed, concentric h+- and Ca2+-selective microelectrodes suitable for in vitro extracellular recording.适用于体外细胞外记录的高速、同心氢离子和钙离子选择性微电极的制作与应用。
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Chloride fluxes in lily pollen tubes: a critical reevaluation.百合花粉管中的氯离子通量:一项关键的重新评估
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Optical single-channel recording: imaging Ca2+ flux through individual N-type voltage-gated channels expressed in Xenopus oocytes.光学单通道记录:通过非洲爪蟾卵母细胞中表达的单个N型电压门控通道成像Ca2+通量。
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Carrier-Based Ion-Selective Electrodes and Bulk Optodes. 1. General Characteristics.基于载体的离子选择性电极和整体光极。1. 一般特性。
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Functional localization of single active ion channels on the surface of a living cell.活细胞表面单个活性离子通道的功能定位。
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Functional characteristics of two BKCa channel variants differentially expressed in rat brain tissues.在大鼠脑组织中差异表达的两种大电导钙激活钾通道变体的功能特性
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Self-referencing, non-invasive, ion selective electrode for single cell detection of trans-plasma membrane calcium flux.用于单细胞跨质膜钙通量检测的自参考、非侵入性离子选择性电极。
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Miniature endplate current rise times less than 100 microseconds from improved dual recordings can be modeled with passive acetylcholine diffusion from a synaptic vesicle.通过改进的双记录技术获得的微型终板电流上升时间小于100微秒,这可以用乙酰胆碱从突触小泡的被动扩散来建模。
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使用快速响应离子选择性微电极进行离子捕获可增强对细胞外离子通道梯度的检测。

Ion trapping with fast-response ion-selective microelectrodes enhances detection of extracellular ion channel gradients.

作者信息

Messerli Mark A, Collis Leon P, Smith Peter J S

机构信息

BioCurrents Research Center, Cell Dynamics Program, Marine Biological Laboratory, Woods Hole, Massachusetts 02543, USA.

出版信息

Biophys J. 2009 Feb 18;96(4):1597-605. doi: 10.1016/j.bpj.2008.11.025.

DOI:10.1016/j.bpj.2008.11.025
PMID:19217875
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2717230/
Abstract

Previously, functional mapping of channels has been achieved by measuring the passage of net charge and of specific ions with electrophysiological and intracellular fluorescence imaging techniques. However, functional mapping of ion channels using extracellular ion-selective microelectrodes has distinct advantages over the former methods. We have developed this method through measurement of extracellular K+ gradients caused by efflux through Ca2+-activated K+ channels expressed in Chinese hamster ovary cells. We report that electrodes constructed with short columns of a mechanically stable K+-selective liquid membrane respond quickly and measure changes in local [K+] consistent with a diffusion model. When used in close proximity to the plasma membrane (<4 microm), the ISMs pose a barrier to simple diffusion, creating an ion trap. The ion trap amplifies the local change in [K+] without dramatically changing the rise or fall time of the [K+] profile. Measurement of extracellular K+ gradients from activated rSlo channels shows that rapid events, 10-55 ms, can be characterized. This method provides a noninvasive means for functional mapping of channel location and density as well as for characterizing the properties of ion channels in the plasma membrane.

摘要

此前,通过使用电生理和细胞内荧光成像技术测量净电荷和特定离子的通过情况,已实现对通道的功能图谱绘制。然而,使用细胞外离子选择性微电极对离子通道进行功能图谱绘制相对于前一种方法具有明显优势。我们通过测量由中国仓鼠卵巢细胞中表达的钙激活钾通道外流引起的细胞外钾离子梯度,开发了这种方法。我们报告称,用机械稳定的钾离子选择性液膜短柱构建的电极响应迅速,并且测量与扩散模型一致的局部[K+]变化。当与质膜近距离使用(<4微米)时,离子选择性微电极对简单扩散构成屏障,形成离子阱。离子阱放大了[K+]的局部变化,而不会显著改变[K+]曲线的上升或下降时间。对激活的rSlo通道的细胞外钾离子梯度测量表明,可以对10 - 55毫秒的快速事件进行表征。这种方法为通道位置和密度的功能图谱绘制以及质膜中离子通道特性的表征提供了一种非侵入性手段。