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Miniaturized DNA amplification platform with soft-lithographically fabricated continuous-flow PCR microfluidic device on a portable temperature controller

机译:小型化DNA扩增平台,具有在便携式温度控制器上的软调型连续流动PCR微流体装置

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摘要

Polymerase chain reaction (PCR) is commonly used to amplify and quantify the nucleic acid segments typically using a benchtop thermocycler. To automate, integrate, and miniaturize the PCR process, several strategies have been studied in a microfluidic environment. Among them, continuous-flow-based microfluidic PCR allows fast thermal cycling using minuscule volume, in a minimal reaction time with multiplexing. The objective was to develop a microfluidic device with a soft-lithographically fabricated continuous-flow serpentine microchannel for DNA amplification executed on a separately designed portable, easy-to-use, low-cost, automated, and miniaturized temperature controller platform (TCP). Direct laser writer (DLW) was used for developing a master on glass using a dry-film photoresist (DFR). Further, a PDMS-based microfluidic device, with dimensions 30 (L) x 0.32 mm(2) (W) x 35 mu m (H), was developed which was bonded on glass using oxygen plasma. The portable device exhibits key features of live data streaming using an IoT platform enabling easy data accessing, monitoring and storage onto the smartphone. The temperature sensitivity of the device was +/- 0.5 degrees C and the maximum achievable temperature was 300 degrees C. The microfluidic device was placed on TCP. A 20 mu L of reaction volume was introduced using an automated syringe pump at various flow rates. As a proof-of-concept, the rat GAPDH gene of the 594-base pair was successfully amplified on the proposed platform which was validated using the gel electrophoresis method. Finally, the results obtained from the proposed device were compared with the conventional thermocycler which showed promising performance and novelty exists in the significant reduction of required amplification time with good device efficiency and low-power consumption.
机译:通常用于扩增和定量通常使用台式热循环仪的核酸段的聚合酶链式反应(PCR)。为了自动化,整合和小型化PCR方法,已经在微流体环境中研究了几种策略。其中,连续流动的微流体PCR允许使用微量卷积的快速热循环,在最小的反应时间与多路复用。该目的是开发一种微流体装置,具有软调标制的连续蛇形微通道,用于在单独设计的便携式,易用,低成本,自动化和小型化温度控制器平台(TCP)上执行的DNA扩增。使用干膜光致抗蚀剂(DFR)用于直接激光作者(DLW)用于在玻璃上开发母料。此外,开发了一种基于PDMS的微流体装置,其尺寸为30(1)×0.32mm(2)(2)(w)×35μm(h),其在使用氧等离子体上粘合在玻璃上。便携式设备使用物联网平台展示实时数据流的关键特征,使能够轻松的数据访问,监视和存储到智能手机上。该装置的温度敏感性为+/- 0.5℃,最大可实现的温度为300℃。将微流体装置置于TCP上。使用自动注射泵以各种流速泵引入20μL的反应体积。作为概念验证,在使用凝胶电泳方法验证的拟议平台上成功扩增了594碱基对的大鼠GAPDH基因。最后,将从所提出的装置获得的结果与传统的热循环仪进行比较,该热循环仪显示出具有良好的装置效率和低功耗的所需放大时间的显着降低的新颖性能和新颖性。

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