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Integrating Internal Standards into Disposable CapillaryElectrophoresis Devices To Improve Quantification

机译:将内部标准整合到一次性毛细管中电泳设备以改善定量

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摘要

To improve point-of-care quantification using microchip capillary electrophoresis (MCE), the chip-to-chip variabilities inherent in disposable, single-use devices must be addressed. This work proposes to integrate an internal standard (ISTD) into the microchip by adding it to the background electrolyte (BGE) instead of the sample—thus eliminating the need for additional sample manipulation, microchip redesigns, and/or system expansions required for traditional ISTD usage. Cs and Li ions were added as integrated ISTDs to the BGE, and their effects on the reproducibility of Na quantification were explored. Results were then compared to the conclusions of our previous publication which used Cs and Li as traditional ISTDs. The in-house fabricated microchips, electrophoretic protocols, and solution matrixes were kept constant, allowing the proposed method to be reliably compared to the traditional method. Using the integrated ISTDs, both Cs and Li improved the Na peak area reproducibility approximately 2-fold, to final RSD values of 2.2–4.7% (n = 900).In contrast (to previous work), Cs as a traditional ISTD resultedin final RSDs of 2.5–8.8%, while the traditional Li ISTD performedpoorly with RSDs of 6.3–14.2%. These findings suggest integratedISTDs are a viable method to improve the precision of disposable MCEdevices—giving matched or superior results to the traditionalmethod in this study while neither increasing system cost nor complexity.
机译:为了使用微芯片毛细管电泳(MCE)改善即时定量,必须解决一次性使用的一次性设备固有的芯片间差异。这项工作建议将内部标准(ISTD)集成到微芯片中,方法是将其添加到背景电解质(BGE)中,而不是添加到样品中,从而消除了传统ISTD所需的额外样品处理,微芯片重新设计和/或系统扩展的需求用法。将Cs和Li离子作为集成ISTD添加到BGE中,并探讨了它们对Na定量重现性的影响。然后将结果与我们以前使用Cs和Li作为传统ISTD的出版物的结论进行比较。内部制造的微芯片,电泳规程和溶液基质保持恒定,从而使该方法与传统方法相比可靠。使用集成的ISTD,Cs和Li均可将Na峰面积的重现性提高约2倍,最终RSD值达到2.2–4.7%(n = 900)。与以前的工作相反,Cs是传统的ISTD最终RSD为2.5–8.8%,而传统的Li ISTD执行RSD仅为6.3–14.2%。这些发现表明综合ISTD是提高一次性MCE精度的可行方法设备-与传统设备相匹配或更好的结果既不增加系统成本也不增加复杂性。

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