首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Integrated electrokinetically driven microfluidic devices with pH‐mediated solid‐phase extraction coupled to microchip electrophoresis for preterm birth biomarkers
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Integrated electrokinetically driven microfluidic devices with pH‐mediated solid‐phase extraction coupled to microchip electrophoresis for preterm birth biomarkers

机译:综合电动驱动的微流体装置,具有pH介导的固相萃取,耦合到早产生物标志物的微芯片电泳

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摘要

Integration in microfluidics is important for achieving automation. Sample preconcentration integrated with separation in a microfluidic setup can have a substantial impact on rapid analysis of low‐abundance disease biomarkers. Here, we have developed a microfluidic device that uses pH‐mediated solid‐phase extraction (SPE) for the enrichment and elution of preterm birth (PTB) biomarkers. Furthermore, this SPE module was integrated with microchip electrophoresis for combined enrichment and separation of multiple analytes, including a PTB peptide biomarker (P1). A reversed‐phase octyl methacrylate monolith was polymerized as the SPE medium in polyethylene glycol diacrylate modified cyclic olefin copolymer microfluidic channels. Eluent for pH‐mediated SPE of PTB biomarkers on the monolith was optimized using different pH values and ionic concentrations. Nearly 50‐fold enrichment was observed in single channel SPE devices for a low nanomolar solution of P1, with great elution time reproducibility (7% RSD). The monolith binding capacity was determined to be 400 pg (0.2 pmol). A mixture of a model peptide (FA) and a PTB biomarker (P1) was extracted, eluted, injected, and then separated by microchip electrophoresis in our integrated device with ~15‐fold enrichment. This device shows important progress towards an integrated electrokinetically operated platform for preconcentration and separation of biomarkers.
机译:微流体集成对于实现自动化很重要。在微流体设定中分离的样品预浓缩物可以对低丰度疾病生物标志物的快速分析产生显着影响。在这里,我们开发了一种微流体装置,使用pH介导的固相萃取(SPE)进行预料和洗脱早产(PTB)生物标志物。此外,该SPE模块与微芯片电泳集成,用于组合富集和分离多个分析物,包括PTB肽生物标志物(P1)。将反相羟基丙烯酸叔丁基甲基丙烯酸叔丁基聚合为聚乙二醇中的SPE培养基,二丙烯酸酯改性环状烯烃共聚物微流体通道。用不同的pH值和离子浓度优化了对整料中PTB生物标志物的PTB生物标志物的SPE洗脱液。在单通道SPE器件中观察到近50倍的富集,用于P1的低纳米摩尔溶液,具有很大的洗脱时间再现性(7%RSD)。将整体结合能力测定为400pg(0.2pmol)。萃取,喷射,注射,注射型肽(FA)和PTB生物标志物(P1)的混合物,然后通过微芯片电泳在我们的集成装置中分离,富集〜15倍。该装置对综合电动操作平台进行了重要进展,用于生物标志物的分离。

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