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High-throughput droplet analysis and multiplex DNA detection in the microfluidic platform equipped with a robust sample-introduction technique

机译:配备强大的样品引入技术的微流体平台中的高通量液滴分析和多重DNA检测

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In this work, a simple, flexible and low-cost sample-introduction technique was developed and integrated with droplet platform. The sample-introduction strategy was realized based on connecting the components of positive pressure input device, sample container and microfluidic chip through the tygon tubing with homemade polydimethylsiloxane (PDMS) adaptor, so the sample was delivered into the microchip from the sample container under the driving of positive pressure. This sample-introduction technique is so robust and compatible that could be integrated with T-junction, flow-focus or valve-assisted droplet microchips. By choosing the PDMS adaptor with proper dimension, the microchip could be flexibly equipped with various types of familiar sample containers, makes the sampling more straightforward without trivial sample transfer or loading. And the convenient sample changing was easily achieved by positioning the adaptor from one sample container to another. Benefiting from the proposed technique, the time-dependent concentration gradient was generated and applied for quantum dot (QD)-based fluorescence barcoding within droplet chip. High-throughput droplet screening was preliminarily demonstrated through the investigation of the quenching efficiency of ruthenium complex to the fluorescence of QD. More importantly, multiplex DNA assay was successfully carried out in the integrated system, which shows the practicability and potentials in high-throughput biosensing. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,开发了一种简单,灵活且低成本的样品引入技术,并将其与液滴平台集成在一起。通过将正压输入设备,样品容器和微流控芯片的组件通过tygon管与自制的聚二甲基硅氧烷(PDMS)适配器连接,实现样品引入策略,因此在驱动下将样品从样品容器中输送到微芯片中正压力。这种样品引入技术是如此强大且兼容,可以与T型结,流聚焦或阀辅助液滴微芯片集成在一起。通过选择具有适当尺寸的PDMS适配器,微芯片可以灵活地配备各种类型的熟悉的样品容器,使采样更加简单,而无需进行琐碎的样品转移或装载。通过将适配器从一个样品容器放置到另一个样品容器,可以轻松实现方便的样品更换。受益于所提出的技术,生成了随时间变化的浓度梯度,并将其应用于液滴芯片内基于量子点(QD)的荧光条形码。通过研究钌配合物对量子点荧光的猝灭效率,初步证明了高通量液滴的筛选。更重要的是,在集成系统中成功进行了多重DNA检测,这显示了高通量生物传感的实用性和潜力。 (C)2015 Elsevier B.V.保留所有权利。

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