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Rhodol-based Thallium Sensors for Cellular Imaging of Potassium Channel Activity

机译:基于Rhodol的T传感器用于钾通道活性的细胞成像

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摘要

Thallium (Tl+) flux assays enable imaging of potassium (K+) channel activity in cells and tissues by exploiting the permeability of K+ channels to Tl+ coupled with a fluorescent Tl+ sensitive dye. Common Tl+ sensing dyes utilize fluorescein as the fluorophore though fluorescein exhibits certain undesirable properties in these assays including short excitation wavelengths and pH sensitivity. To overcome these drawbacks, the replacement of fluorescein with rhodols was investigated. A library of 13 rhodol-based Tl+ sensors was synthesized and their properties and performance in Tl+ flux assays evaluated. The dimethyl rhodol Tl+ sensor emerged as the best of the series and performed comparably to fluorescein-based sensors while demonstrating greater pH tolerance in the physiological range and excitation and emission spectra 30 nm red-shifted from fluorescein.
机译:hall(Tl + )通量测定法可通过利用K + 通道的通透性对细胞和组织中的钾(K + )通道活性进行成像Tl + 结合荧光Tl + 敏感染料。普通的Tl + 感性染料使用荧光素作为荧光团,尽管荧光素在这些测定中显示出某些不良的特性,包括短激发波长和pH敏感性。为了克服这些缺点,研究了用杜鹃花代替荧光素。合成了一个基于13个基于Rhodol的Tl + 传感器的库,并评估了它们在Tl + 通量测定中的性能和性能。二甲基Rhodol Tl + 传感器成为该系列中的佼佼者,其性能与基于荧光素的传感器相当,同时在生理范围内表现出更大的pH耐受性,并且激发和发射光谱从荧光素中移出了30 nm。

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