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Thermophoresis of DNA determined by microfluidic fluorescence

机译:通过微流荧光测定DNA的热泳

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We describe a microfluidic all-optical technique to measure the thermophoresis of molecules. Within micrometer-thick chambers, we heat, aqueous solutions with a micrometer-sized focus of infrared light. The temperature increase of about 1 K. is monitored with temperature-sensitive fluorescent, dyes. We test the approach in measuring the thermophoresis of DNA. We image die concentration of DNA in a second fluorescence-color channel. DNA is depleted away from the heated spot. The profile of depletion is fitted by the thermophoretic theory to reveal the Soret coefficient. We evaluate the method with numerical 3D calculations of temperature profiles: drift,, convection and thermophoretic depletion using finite element methods. The approach opens new ways to monitor thermophoresis at the single molecule level. near boundaries and in complex mixtures. The flexible microfluidic setting is a good Step towards microfluidic applications of thermophoresis in biotechnology.
机译:我们描述了一种微流体全光学技术来测量分子的热泳。在微米级的室内,我们加热微米级焦点的水溶液。用对温度敏感的荧光染料监测约1K的温度升高。我们测试了测量DNA的热泳的方法。我们在第二个荧光色通道中成像DNA的浓度。 DNA从加热的斑点中耗尽。耗尽曲线通过热泳理论进行拟合以揭示索雷特系数。我们使用有限元方法通过温度分布的3D数值计算来评估该方法:漂移,对流和热泳损耗。该方法开辟了在单分子水平上监测热泳的新方法。靠近边界和复杂的混合物。灵活的微流控设置是朝着生物技术中热泳的微流控应用迈出的良好一步。

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