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基于纸的微芯片电泳的动态pH和热分析

Dynamic pH and Thermal Analysis of Paper-Based Microchip Electrophoresis.

作者信息

Hasan Muhammad Noman, An Ran, Akkus Asya, Akkaynak Derya, Minerick Adrienne R, Kharangate Chirag R, Gurkan Umut A

机构信息

Department of Mechanical and Aerospace Engineering, Case Western Reserve University, Cleveland, OH 44106, USA.

Department of Ecology & Evolutionary Biology, Princeton University, Princeton, NJ 08544, USA.

出版信息

Micromachines (Basel). 2021 Nov 22;12(11):1433. doi: 10.3390/mi12111433.

Abstract

Paper-based microchip electrophoresis has the potential to bring laboratory electrophoresis tests to the point of need. However, high electric potential and current values induce pH and temperature shifts, which may affect biomolecule electrophoretic mobility thus decrease test reproducibility and accuracy of paper-based microfluidic electrophoresis. We have previously developed a microchip electrophoresis system, HemeChip, which has the capability of providing low-cost, rapid, reproducible, and accurate point-of-care (POC) electrophoresis tests for hemoglobin analysis. Here, we report the methodologies we implemented for characterizing HemeChip system pH and temperature during the development process, including utilizing commercially available universal pH indicator and digital camera pH shift characterization, and infrared camera characterizing temperature shift characterization. The characterization results demonstrated that pH shifts up to 1.1 units, a pH gradient up to 0.11 units/mm, temperature shifts up to 40 °C, and a temperature gradient up to 0.5 °C/mm existed in the system. Finally, we report an acid pre-treatment of the separation media, a cellulose acetate paper, mitigated both pH and temperature shifts and provided a stable environment for reproducible HemeChip hemoglobin electrophoresis separation.

摘要

基于纸的微芯片电泳有潜力将实验室电泳测试带到需要的地点。然而,高电势和电流值会引起pH值和温度变化,这可能会影响生物分子的电泳迁移率,从而降低基于纸的微流控电泳的测试重现性和准确性。我们之前开发了一种微芯片电泳系统,即血红素芯片(HemeChip),它能够为血红蛋白分析提供低成本、快速、可重现且准确的即时检测(POC)电泳测试。在此,我们报告了在开发过程中用于表征血红素芯片系统pH值和温度的方法,包括利用市售通用pH指示剂和数码相机进行pH变化表征,以及利用红外相机进行温度变化表征。表征结果表明,该系统中pH值变化高达1.1个单位,pH梯度高达0.11单位/毫米,温度变化高达40℃,温度梯度高达0.5℃/毫米。最后,我们报告了对分离介质醋酸纤维素纸进行酸预处理,减轻了pH值和温度变化,并为可重现的血红素芯片血红蛋白电泳分离提供了稳定的环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24e6/8620811/ad86271d0f80/micromachines-12-01433-g001.jpg

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