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Microfluidic handling of PCR solution and DNA amplification on a reaction chamber array biochip

机译:反应室阵列生物芯片上PCR溶液和DNA扩增的微流体处理

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摘要

A microfluidic biochip for conducting an array of polymerase chain reaction (PCR) simultaneously was fabricated to understand the microfluidic loading process of PCR solution into microfabricated glass reaction chambers. The geometrical factors of the microfluidic structure, including the shape and depth of the microchamber, shape and size of the microchannels were investigated on the formation of air bubbles trapped within the microchamber during the PCR solution loading process. Furthermore, the effects of surface properties of the microfluidic structure, including hydrophilicity of the microchamber and inlet channel, and hydrophobicity of the outlet channel, on the loading of PCR solution, especially on the formation of air bubbles were studied. As a result, the surface wetting property of the microchamber was found to be the main reason for the formation of the air bubbles inside the microchamber during the loading of PCR solution in the biochips. A solution to avoid the air trapping has been proposed and investigated.
机译:为了同时了解聚合酶链反应(PCR)阵列的微流体生物芯片的制造,以了解PCR溶液在微细玻璃反应室中的微流体加载过程。研究了微流体结构的几何因素,包括微腔室的形状和深度,微通道的形状和大小,以了解在PCR溶液加载过程中捕获在微腔室内的气泡的形成。此外,研究了微流体结构的表面性质,包括微腔室和入口通道的亲水性,以及出口通道的疏水性,对PCR溶液的负载,特别是对气泡形成的影响。结果,发现微腔室的表面润湿性是在生物芯片中装载PCR溶液期间在微腔室内形成气泡的主要原因。已经提出并研究了避免空气滞留的解决方案。

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