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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Electrochemical valveless flow microsystems for ultra fast and accurate analysis of total isoflayones with integrated calibration
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Electrochemical valveless flow microsystems for ultra fast and accurate analysis of total isoflayones with integrated calibration

机译:电化学无阀流量微系统,具有集成校准功能,可快速,准确地分析总异黄酮

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摘要

A novel strategy integrating methodological calibration and analysis on board on a planar first-generation microfluidics system for the determination of total isoflavones in soy samples is proposed.The analytical strategy is conceptually proposed and successfully demonstrated on the basis of (i) the microchip design (with the possibility to use both reservoirs),(ii) the analytical characteristics of the developed method (statically zero intercept and excellent robustness between calibration slopes,RSDs < 5%),(iii) the irreversible electrochemical behaviour of isoflavone oxidation (no significant electrode fouling effect was observed between calibration and analysis runs) and (iv) the inherent versatility of the electrochemical end-channel configurations (possibility of use different pumping and detection media).Repeatability obtained in both standard (calibration) and real soy samples (analysis) with values of RSD less than 1% for the migration times indicated the stability of electroosmotic flow (EOF) during both integrated operations.The accuracy (an error of less than 6%) is demonstrated for the first time in these microsystems using a documented secondary standard from the Drug Master File (SW/1211/03) as reference material.Ultra fast calibration and analysis of total isoflavones in soy samples was integrated successfully employing 60 s each;enhancing notably the analytical performance of these microdevices with an important decrease in overall analysis times (less than 120 s) and with an increase in accuracy by a factor of 3.
机译:提出了一种在平面第一代微流控系统上将方法学校准和分析相结合的新颖策略,用于测定大豆样品中的总异黄酮。该分析策略在概念上被提出并在(i)微芯片设计的基础上得到了成功证明。 (ii)所开发方法的分析特性(静态零截距和标定斜率之间出色的鲁棒性,RSDs <5%),(iii)异黄酮氧化的不可逆电化学行为(无有效电极)在校准和分析运行之间观察到了结垢效应),以及(iv)电化学末端通道配置的固有多功能性(可以使用不同的泵送和检测介质)在标准(校准)和真实大豆样品(分析)中均获得了重复性RSD值小于1%的迁移时间表明了电子稳定在两个集成操作过程中均发生了烟雾流(EOF)。使用药物主文件(SW / 1211/03)中记录的次级标准作为参考材料,首次在这些微系统中证明了准确性(误差小于6%)成功地整合了大豆样品中总异黄酮的超快速校准和分析功能,每次使用60 s即可成功完成;显着提高了这些微型设备的分析性能,大大缩短了总分析时间(少于120 s),并且精度提高了30%。系数为3。

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