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Development of an integrated bio-microfluidic package with micro-valves and reservoirs for a DNA lab on a chip (LOC) application

机译:开发芯片(LOC)应用中的微阀和储层的综合生物微流体包装和用于DNA实验室的储存器

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A bio-microfluidic package has been developed with integrated reservoir and valves for DNA (deoxyribonucleic acid) lab on a chip (LOC) application. A polymer material, PDMS (polydimethylsiloxane) is used for encapsulating the DNA chip. Channels, reservoirs and valves are formed on the PDMS material by casting method. A mold fabricated in acrylic material is used. A double sided adhesive tape is used to bond PDMS substrates and DNA chip to PDMS substrate. A capillary force passive valve has been designed and fabricated in PDMS. Threshold pressure required for valve opening has been characterized for different capillary channel dimensions. Reservoirs with different dimensions are fabricated based on the volume required in the DNA extraction process. Filled reservoirs with reagents are sealed by a PDMS membrane. An external actuation is used to apply pressure on the PDMS membrane to push the fluid from the reservoir to DNA chip. Fluidic testing on the PDMS package showed no leakage and no cross contamination in the channels. The developed package has successfully passed bio-testing on DNA extraction.
机译:Bio-Microfluidic包装已经用芯片(LOC)应用的DNA(脱氧核糖核酸)实验室的集成贮存器和阀门开发。聚合物材料,PDMS(聚二甲基硅氧烷)用于包封DNA芯片。通过铸造方法在PDMS材料上形成通道,储存器和阀门。使用丙烯酸材料制造的模具。双面胶带用于将PDMS基板和DNA芯片粘合到PDMS基板。在PDMS中设计和制造毛细力被动阀。阀门开口所需的阈值压力已经表征了不同的毛细管通道尺寸。基于DNA提取过程中所需的体积,制造具有不同尺寸的储存器。用试剂的填充储存器被PDMS膜密封。外部致动用于在PDMS膜上施加压力,以将流体从储存器推向DNA芯片。 PDMS封装上的流体测试显示出没有泄漏,并且在通道中没有交叉污染。开发的包装成功通过了DNA提取的生物检测。

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