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Flow cytometric ion detection with plasticized poly(vinyl chloride) microspheres containing selective ionophores

机译:含选择性离子载体的增塑聚氯乙烯微球的流式细胞仪离子检测

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The use of flow cytometry as a rapid, high-throughput diagnostic tool for the analysis of ions is described. Monodisperse, uniform microspheres, which obey bulk optode theory and are governed by bulk extraction processes rather than surface phenomena, were prepared under mild, nonreactive conditions using a sonic stream particle casting apparatus. As an initial example demonstrating the utility of this approach, microspheres that contained a H+-selective fluorescent chromoionophore (ETH 5294), a cation-exchanger (NaTFPB), and either a highly sodium-selective (sodium ionophore X) or a potassium-selective ionophore (BME-44) were prepared. Separate solution analysis of sodium- and potassium-selective microspheres resulted in the generation of functional response curves using peak channel fluorescence intensities. The selectivity observed for both types of particles is sufficient for the clinical determination of Na+ and K+. Furthermore, sodium- and potassium-selective microspheres were analyzed in parallel using sodium sample solutions, resulting in the successful determination of sodium ion concentrations and providing important information about the selectivity of the potassium-selective sensors over sodium. This work demonstrates the potential applicability of flow cytometry as a means for developing multiplexed, rapid, high-throughput analyses for clinically relevant ions. [References: 33]
机译:描述了使用流式细胞仪作为快速,高通量的离子分析工具。使用声流颗粒浇铸设备,在温和,无反应的条件下,制备了符合本体光电理论并受本体萃取过程而非表面现象支配的单分散,均匀的微球。作为证明该方法实用性的初始示例,微球包含H +选择性荧光发色团(ETH 5294),阳离子交换剂(NaTFPB)和高钠选择性(钠离子载体X)或钾选择性制备了离子载体(BME-44)。钠和钾选择性微球的单独溶液分析导致使用峰通道荧光强度生成功能响应曲线。对两种类型的颗粒观察到的选择性足以用于临床测定Na +和K +。此外,使用钠样品溶液平行分析了钠和钾选择性微球,从而成功测定了钠离子浓度,并提供了有关钾选择性传感器对钠的选择性的重要信息。这项工作证明了流式细胞术作为开发针对临床相关离子的多重,快速,高通量分析的手段的潜在适用性。 [参考:33]

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