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Integrated DNA extraction and amplification using electrokinetic pumping in a microfluidic device

机译:在微流控设备中使用电动泵进行集成的DNA提取和扩增

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摘要

An integrated system employing anion exchange for the extraction of DNA from biological samples prior to polymerase chain reaction DNA amplification has been developed, based on microfluidic methodology utilising electrokinetic pumping. In this system, the biological samples were added directly to chitosan-coated silica beads to facilitate DNA immobilisation. The purified, pre-concentrated DNA was then eluted using a combination of electro-osmotic flow enhanced with electrophoretic mobility, which enable DNA to be transported by both mechanisms into the DNA amplification chamber. Through optimisation of the DNA elution conditions, average DNA extraction efficiencies of 69.1% were achievable. Subsequent DNA amplification performed on the microfluidic system demonstrated not only the ability to use electrokinetic movement to integrate the two processes on a single device, but also that the quality and quantity of DNA eluted was suitable for downstream analysis. This work offers an attractive real-world to chip interface and a route to simpler Lab-on-a-Chip technology which eliminates the need for moving parts...
机译:基于利用电动泵的微流体方法,已经开发出一种采用阴离子交换从生物样品中提取DNA的聚合系统,然后进行聚合酶链反应DNA扩增。在该系统中,将生物样品直接添加到壳聚糖包被的二氧化硅微珠中,以促进DNA固定。然后使用电渗流和电泳迁移率的组合洗脱纯化的,预浓缩的DNA,这使DNA可以通过两种机制转运到DNA扩增室中。通过优化DNA洗脱条件,平均DNA提取效率可达到69.1%。随后在微流体系统上进行的DNA扩增不仅显示了利用电动运动将两个过程整合在单个设备上的能力,而且还证明了洗脱的DNA的质量和数量适用于下游分析。这项工作为芯片接口提供了一个引人入胜的真实世界,并提供了一种更简单的片上实验室技术的途径,从而无需移动部件。

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