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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Improving chip-to-chip precision in disposable microchip capillary electrophoresis devices with internal standards
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Improving chip-to-chip precision in disposable microchip capillary electrophoresis devices with internal standards

机译:通过内部标准提高一次性微芯片毛细管电泳设备中的芯片间精度

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摘要

To realize portable systems for routine measurements in point-of-care settings, MCE methods are required to be robust across many single-use chips. While it is well-known internal standards (ISTDs) improve run-to-run precision, a systematic investigation is necessary to determine the significance of chip-to-chip imprecision in MCE and how ISTDs account for it. This paper addresses this question by exploring the reproducibility of Na quantification across six basic, in-house fabricated microchips. A dataset of 900 electrophoerograms was collected from analyzing five concentrations of NaCl with two ISTDs (CsCl and LiCl). While both improved the peak area reproducibility, the Na/Cs ratio was superior to the Na/Li ratio (improving the RSD by a factor of 2-4, depending on the Na concentration). Weattribute this to the significant variation inmicrochannel surface properties, which was accounted for by cesium but not lithium. Microchip dimension and detector variations were only a few percent, and could be improved through commercial fabrication over in-house made microchips. These results demonstrate that ISTDs not only correct for intrachip imprecision, but are also a viable means to correct for chip-to-chip imprecision inherent in disposable, point-of-care MCE devices. However, as expected, the internal standard must be carefully chosen.
机译:为了实现在现场即时设置中进行常规测量的便携式系统,要求MCE方法在许多一次性芯片上都具有稳健性。尽管众所周知的内部标准(ISTD)可以提高运行精度,但必须进行系统的调查以确定MCE中芯片对芯片不精确度的重要性以及ISTD如何对其进行解释。本文通过探索Na定量在六个基本的内部制造微芯片上的可重复性来解决这个问题。通过使用两种ISTD(CsCl和LiCl)分析五种浓度的NaCl,收集了900张心电图的数据集。尽管两者都改善了峰面积的重现性,但Na / Cs比优于Na / Li比(取决于Na浓度,将RSD提高2-4倍)。将此归因于微通道表面性能的显着变化,这是铯引起的,而不是锂引起的。微芯片的尺寸和检测器变化仅占百分之几,并且可以通过商业化制造而超过内部制造的微芯片。这些结果表明,ISTD不仅可以纠正芯片内不精确性,而且还是一种用于校正一次性医疗现场MCE设备固有的芯片到芯片不精确性的可行方法。但是,正如预期的那样,必须仔细选择内部标准。

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