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Miniaturized devices towards an Integrated Lab-on-a-chip Platform for DNA diagnostics

机译:用于DNA诊断的集成实验室平台的小型化器件

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Microfluidics is an emerging technology enabling the development of Lab-on-a-chip (LOC) systems for clinical diagnostics, drug discovery and screening, food safety and environmental analysis. LOC systems integrate and scale down one or several laboratory functions on a single chip of a few mm~2 to cm~2 in size, and account for many advantages on biochemical analyses, such as low sample and reagent consumption, low cost, reduced analysis time, portability and point-of-need compatibility. Currently, available nucleic acid diagnostic tests take advantage of Polymerase Chain Reaction (PCR) that allows exponential amplification of portions of nucleic acid sequences that can be used as indicators for the identification of various diseases. Here, we present a comparison between static chamber and continuous flow miniaturized PCR devices, in terms of energy consumption for devices fabricated on the same material stack, with identical sample volume and channel dimensions. The comparison is implemented by a computational study coupling heat transfer in both solid and fluid, mass conservation of species, and joule heating. Based on the conclusions of this study, we develop low-cost and fast DNA amplification devices for both PCR and isothermal amplification, and we implement them in the detection of mutations related to breast cancer. The devices are fabricated by mass production amenable technologies on printed circuit board (PCB) substrates, where copper facilitates the incorporation of on-chip microheaters, defining the thermal zones necessary for PCR or isothermal amplification methods.
机译:Microfluidics是一种新兴技术,可以开发用于临床诊断,药物发现和筛选,食品安全和环境分析的芯片上(LOC)系统。 LOC系统将一个或多个实验室功能集成在一起或缩小一个或多个实验室功能,尺寸为几毫米〜2至cm〜2的单个芯片,并且考虑到生物化学分析的许多优点,例如低样品和试剂消耗,低成本,降低分析时间,可移植性和需求点兼容性。目前,可用的核酸诊断试验利用聚合酶链反应(PCR),其允许可以用作鉴定各种疾病的指标的核酸序列的核酸序列的指数扩增。这里,我们在静电腔室和连续流动小型化PCR器件之间的比较,就同一材料堆叠制造的装置的能量消耗,具有相同的样本体积和通道尺寸。该比较是通过固体和流体,物种质量保护和焦耳加热的计算研究耦合热传递来实现。基于本研究的结论,我们开发了用于PCR和等温扩增的低成本和快速DNA扩增装置,并在检测到与乳腺癌相关的突变中。这些器件由印刷电路板(PCB)基板上的大规模生产可编程技术制造,其中铜有利于片上微热器,定义PCR或等温扩增方法所需的热区。

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