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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >A parylene-based dual channel micro-electrophoresis system for rapid mutation detection via heteroduplex analysis.
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A parylene-based dual channel micro-electrophoresis system for rapid mutation detection via heteroduplex analysis.

机译:基于聚对二甲苯的双通道微电泳系统,可通过异源双链分析快速检测突变。

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摘要

A new dual channel micro-electrophoresis system for rapid mutation detection based on heteroduplex analysis was designed and implemented. Mutation detection was successfully achieved in a total separation length of 250 mum in less than 3 min for a 590 bp DNA sample harboring a 3 bp mutation causing an amino acid change. Parylene-C was used as the structural material for fabricating the micro-channels as it provides conformal deposition, transparency, biocompatibility, and low background fluorescence without any surface treatment. A new dual channel architecture was derived from the traditional cross-channel layout by forming two identical channels with independent sample loading and waste reservoirs. The control of injected sample volume was accomplished by a new u-turn injection technique with pull-back method. The use of heteroduplex analysis as a mutation detection method on a cross-linked polyacrylamide medium provided accurate mutation detection in an extremely short length and time. The presence of two channels on the microchip offers the opportunity of comparing the sample to be tested with a desired control sample rapidly, which is very critical for the accuracy and reliability of the mutation analyses, especially for clinical and research purposes.
机译:设计并实现了一种基于异源双链分析的新型双通道微电泳快速突变检测系统。对于590 bp的DNA样品,其3 bp的突变引起氨基酸变化,在不到3分钟的时间内,总分离长度为250 mum,成功实现了突变检测。聚对二甲苯-C被用作制造微通道的结构材料,因为它提供了保形沉积,透明性,生物相容性和低背景荧光,而无需任何表面处理。一种新的双通道架构是从传统的交叉通道布局中派生而来,它形成了两个具有独立样品加载和废物储存器的相同通道。进样量的控制是通过采用回拉法的新型掉头进样技术完成的。使用异源双链分析作为交联聚丙烯酰胺介质上的突变检测方法,可以在极短的时间内和极短的时间内进行准确的突变检测。微芯片上两个通道的存在提供了快速将待测样品与所需对照样品进行比较的机会,这对于突变分析的准确性和可靠性至关重要,特别是对于临床和研究目的而言。

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