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Minimal microfabrication required digital microfluidic system toward point-of-care nucleic acid amplification test application for developing countries

机译:最小的微生物需要数字微流体系统朝着发展中国家的护理点核酸扩增试验申请

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摘要

Digital Microfluidics (DMF) has potentially been a favorable platform for point-of-care molecular diagnostics. However, its fabrication process normally relies heavily on expensive microfabrication facilities and equipment. In this work, we developed a portable, small footprint DMF device that requires minimal microfabrication work (only a small clean bench and a DIY spin coater were required) but is still capable of performing nucleic acid amplification tests. The DMF system implemented in this work could perform successfully the Loop-mediated isothermal Amplification (LAMP) reaction with samples containing extracted DNA of Plasmodium falciparum that causes Malaria in human. The LAMP reaction was conducted at the optimal temperature of 65 degrees C in 45 min with the total reaction volume of 1.5 mu L. The results of LAMP were designed to be observable to naked eyes via the color change from pink to yellowish orange, which simplifies the readout step and eliminates the necessity for external and bulky result-reading equipment.
机译:数字微流体(DMF)可能是护理点分子诊断的有利平台。然而,其制造过程通常严重依赖于昂贵的微制造设施和设备。在这项工作中,我们开发了一种便携式小型的DMF装置,需要最小的微型切换工作(仅需要一个小的清洁工作台和DIY旋转涂布机),但仍然能够进行核酸扩增试验。在本作作品中实施的DMF系统可以成功地表演环介导的等温扩增(灯)反应与含有疟原虫的疟原虫DNA的样品进行,导致人类的疟疾。在45分钟内在65℃的最佳温度下进行灯反应,总反应体积为1.5μm1.灯的结果设计为可观察到通过从粉红色到淡黄色橙色的颜色变化观察到肉眼,这简化了读出步骤并消除了外部和庞大的结果读取设备的必要性。

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