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MINIATURE SODIUM-SELECTIVE ION-EXCHANGE OPTODE WITH FLUORESCENT PH CHROMOIONOPHORES AND TUNABLE DYNAMIC RANGE

机译:具有荧光PH色离子和可调动态范围的微型钠离子交换光电二极管

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摘要

An extension into the fluorescence mode of ion-exchange optodes is described, allowing miniaturization and its concomitant benefits, A micrometer-size, fluorescent fiber-optic sodium sensor is described, based on a highly sodium-selective, crown ether-capped calix[4]arene ionophore, capable of ratiometric operation, Three sensor configurations are given, employing different lipophilic, fluorescent pH chromoionophores (Nile Blue derivatives), demonstrating the ability to improve the detection limit and tune the dynamic range to the desired region of interest, Two of the sensors are of special interest in that their working ranges he within those desired for measuring intracellular cytosolic or blood levels of sodium at the respective physiological pH. These optodes have excellent sodium selectivity, with other physiologically relevant cations (e.g., potassium, calcium, and magnesium) being highly discriminated. Three simple mathematical relationships are given for the three experimentally used fluorescent signal mechanisms (intensity, intensity ratios, and inner-filter or energy transfer effects), permitting visualization on a single graph and enabling direct comparison of the different sensors' optical responses on a common platform. Finally, these optodes measure the sample's sodium activity, rather than the concentration, provided that the sample's pH is measured simultaneously by another sensor, such as a glass electrode.
机译:描述了离子交换光电二极管荧光模式的扩展,从而实现了小型化及其伴随的好处。基于高度钠选择性,冠醚封盖的杯,描述了微米尺寸的荧光光纤钠传感器[4]。 ] arene离子载体,能够按比例操作,给出了三种传感器配置,采用不同的亲脂性荧光pH离子载体(尼罗蓝衍生物),证明了能够提高检测限并将动态范围调节至所需的目标区域的能力,其中两个传感器特别受关注,因为它们的工作范围在相应的生理pH值下测量细胞内胞质或血液中钠水平所需的范围内。这些光电二极管具有出色的钠选择性,并且可以高度区分其他生理相关的阳离子(例如钾,钙和镁)。对于三种实验使用的荧光信号机制,给出了三个简单的数学关系(强度,强度比以及内部滤光片或能量转移效应),从而可以在单个图形上可视化,并可以在一个普通图形上直接比较不同传感器的光学响应平台。最后,这些光电二极管可以测量样品的钠活度,而不是浓度,只要样品的pH值可以通过另一个传感器(例如玻璃电极)同时测量即可。

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