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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Integrated internal standards: A sample prep‐free method for better precision in microchip CE
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Integrated internal standards: A sample prep‐free method for better precision in microchip CE

机译:综合内部标准:用于在Microchip Ce中更好地精确的样品预制方法

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Abstract Point‐of‐care systems based on microchip capillary electrophoresis require single‐use, disposable microchips prefilled with all necessary solutions so an untrained operator only needs to apply the sample and perform the analysis. While microchip fabrication can be (and has been) standardized, some manufacturing differences between microchips are unavoidable. To improve analyte precision without increasing device costs or introducing additional error sources, we recently proposed the use of integrated internal standards (ISTDs): ions added to the BGE in small concentrations which form system peaks in the electropherogram that can be used as a measurement reference. Here, we further expand this initial proof‐of‐principle test to study a clinically‐relevant application of K ion concentrations in human blood; however, using a mock blood solution instead of real samples to avoid interference from other obstacles (e.g. cell lysis). Cs as an integrated ISTD improves repeatability of K ion migration times from 6.97% to 0.89% and the linear calibration correlation coefficient ( R 2 ) for K quantification from 0.851 to 0.967. Peak area repeatability improves from 11.6–13.3% to 4.75–5.04% at each K concentration above the LOQ. These results further validate the feasibility of using integrated ISTDs to improve imprecision in disposable microchip CE devices by demonstrating their application for physiological samples.
机译:摘要基于微芯片毛细管电泳的护理系统需要一次性的一次性微芯片预示出所有必要的解决方案,因此未经训练的操作员仅需要应用样品并进行分析。虽然微芯片制造可以是(并且已经)标准化,但微芯片之间的一些制造差异是不可避免的。为了提高分析物精度而不增加设备成本或引入额外的误差来源,我们最近提出了使用综合内部标准(ISTD):离子以小浓度添加到BGE的小浓度,该浓度形成可用作测量参考的电泳图中的系统峰值。在这里,我们进一步扩大了这种原则上的原则上的校验证明,研究了人类血液中K离子浓度的临床相关应用;然而,使用模拟血液溶液而不是真正的样品以避免与其他障碍物的干扰(例如细胞裂解)。 CS作为集成的ISTD将K离子迁移时间的可重复性从6.97%增加到0.89%,并且为k量化的线性校准相关系数(R 2)为0.851至0.967。峰面积可重复性在LOQ上方的每k浓度下提高11.6-13.3%至4.75-5.04%。这些结果进一步验证了使用集成ISTDS的可行性,通过证明其对生理样品的应用来改善一次性微芯片CE器件中的不精确。

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