首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Optical single-channel recording by imaging Ca2+ flux through individual ion channels: theoretical considerations and limits to resolution.
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Optical single-channel recording by imaging Ca2+ flux through individual ion channels: theoretical considerations and limits to resolution.

机译:通过成像通过单个离子通道的Ca2 +通量来进行光学单通道记录:理论上的考虑和对分辨率的限制。

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摘要

Recent developments in microscopy and fluorescent indicators now make it possible to monitor the activity and localization of membrane ion channels by imaging Ca(2+) flux through individual channels. Such optical approaches have advantages over electrophysiological single-channel techniques in that they are less invasive, provide spatial information and can simultaneously and independently monitor hundreds of channels. However, their kinetic resolution does not yet approach that of patch-clamp recordings. To help understand the processes that determine the temporal resolution and noise level of single-channel Ca(2+) fluorescence signals (SCCaFTs), we simulated the microdomains of Ca(2+) ions and Ca(2+)-bound indicator dye that exist around the mouth of an open channel. Further, as an aid to development of improved optical techniques, we modeled the dependence of the amplitude and kinetics of SCCaFTs on parameters such as the imaging volume, the indicator concentration, affinity and mobility, and the presence of endogenous and exogenous Ca(2+) buffers. The results indicate that under optimal conditions, including the use of confocal or total-internal reflection microscopy to image from sub-femtolitre volumes, SCCaFTs should resolve channel openings as brief as 1ms with a signal-to-noise ratio >10.
机译:显微镜和荧光指示剂的最新发展现在使通过成像通过单个通道的Ca(2+)通量来监测膜离子通道的活性和定位成为可能。这样的光学方法相对于电生理学单通道技术具有优势,因为它们具有较小的侵入性,提供空间信息并且可以同时独立地监视数百个通道。但是,它们的动力学分辨率尚未达到膜片钳记录的动力学分辨率。为了帮助了解确定单通道Ca(2+)荧光信号(SCCaFTs)的时间分辨率和噪声水平的过程,我们模拟了Ca(2+)离子和Ca(2+)结合的指示剂染料的微区,存在于明渠口周围。此外,作为对改进光学技术发展的帮助,我们对SCCaFT的振幅和动力学依赖于诸如成像量,指示剂浓度,亲和力和迁移率以及内源性和外源性Ca(2+ )缓冲区。结果表明,在最佳条件下,包括使用共焦或全内反射显微镜对亚英尺容积的图像进行成像,SCCaFT应能将通道开口解析为短至1ms,信噪比> 10。

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