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A Rapid Method for Optimizing Running Temperature of Electrophoresis through Repetitive On-Chip CE Operations

机译:通过重复的片上CE操作优化电泳运行温度的快速方法

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In this paper, a rapid and simple method to determine the optimal temperature conditions for denaturant electrophoresis using a temperature-controlled on-chip capillary electrophoresis (CE) device is presented. Since on-chip CE operations including sample loading, injection and separation are carried out just by switching the electric field, we can repeat consecutive run-to-run CE operations on a single on-chip CE device by programming the voltage sequences. By utilizing the high-speed separation and the repeatability of the on-chip CE, a series of electrophoretic operations with different running temperatures can be implemented. Using separations of reaction products of single-stranded DNA (ssDNA) with a peptide nucleic acid (PNA) oligomer, the effectiveness of the presented method to determine the optimal temperature conditions required to discriminate a single-base substitution (SBS) between two different ssDNAs is demonstrated. It is shown that a single run for one temperature condition can be executed within 4 min, and the optimal temperature to discriminate the SBS could be successfully found using the present method.
机译:本文提出了一种使用温度控制的片上毛细管电泳(CE)装置确定变性电泳最佳温度条件的快速简便的方法。由于仅通过切换电场即可执行包括样品加载,进样和分离在内的片上CE操作,因此我们可以通过对电压序列进行编程,在单个片上CE设备上重复连续运行的CE操作。通过利用片上CE的高速分离和可重复性,可以实现一系列具有不同运行温度的电泳操作。使用单链DNA(ssDNA)与肽核酸(PNA)寡聚物的反应产物分离,本方法的有效性确定了区分两个不同ssDNA的单碱基取代(SBS)所需的最佳温度条件被证明。结果表明,可以在4分钟内针对一个温度条件进行单次运行,并且使用本方法可以成功找到区分SBS的最佳温度。

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