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Development of a microfluidic platform with an optical imaging microarray capable of attomolar target DNA detection

机译:具有光学成像微阵列的微流体平台的开发,该光学成像微阵列能够检测摩尔目标DNA

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In this paper, DNA hybridization in a microfluidic manifold is performed using fluorescence detection on a fiber-optic microarray. The microfluidic device integrates optics, sample transport, and fluidic interconnects on a single platform. A high-density optical imaging fiber array containing oligonucleotide-labeled microspheres was developed. DNA hybridization was observed at concentrations as low as 10 aM with response times of less than 15 min at a flow rate of 1 mu L/min using 50 mu L of target DNA samples. The fast response times coupled with the low sample volumes and the use of a high-density, fiber-optic microarray format make this method highly advantageous. This paper describes the initial development, optimization, and integration of the microfluidic platform with imaging fiber arrays.
机译:在本文中,使用光纤微阵列上的荧光检测在微流体歧管中进行DNA杂交。微流体设备将光学,样品传输和流体互连集成在一个平台上。开发了包含寡核苷酸标记的微球的高密度光学成像纤维阵列。使用50μL靶DNA样品以1μL / min的流速在低至10 aM的浓度下观察到DNA杂交,响应时间少于15分钟。快速的响应时间加上较低的样品量以及高密度的光纤微阵列格式的使用使该方法具有极大的优势。本文介绍了微流体平台与成像光纤阵列的初步开发,优化和集成。

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