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首页> 外文期刊>Lab on a chip >Platinum nanoparticle-facilitated reflective surfaces for non-contact temperature control in microfluidic devices for PCR amplification
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Platinum nanoparticle-facilitated reflective surfaces for non-contact temperature control in microfluidic devices for PCR amplification

机译:铂纳米粒子促进的反射表面,用于微流体装置中的非接触式温度控制,以进行PCR扩增

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The polymerase chain reaction (PCR) is critical for amplification of target sequences of DNA or RNA that have clinical, biological or forensic relevance. While extrinsic Fabry-Perot interferometry (EFPI) has been shown to be adequate for non-contact temperature sensing, the difficulty in defining a reflective surface that is semi-reflective, non-reactive for PCR compatibility and adherent for thermal bonding has limited its exploitation. Through the incorporation of a reflective surface fabricated using a thermally driven self-assembly of a platinum nanoparticle monolayer on the surface of the microfluidic chamber, an enhanced EFPI signal results, allowing for non-contact microfluidic temperature control instrumentation that uses infrared-mediated heating, convective forced-air cooling, and interferometic temperature sensing. The interferometer is originally calibrated with a miniature copper-constantan thermocouple in the PCR chamber resulting in temperature sensitivities of -22.0 to -32.8 nm· °C~(-1), depending on the chamber depth. This universal calibration enables accurate temperature control in any device with arbitrary dimensions, thereby allowing versatility in various applications. Uniquely, this non-contact temperature control for PCR thermocycling is applied to the amplification of STR loci for human genetic profiling, where nine STR loci are successfully amplified for human identification using the EFPI-based non-contact thermocycling.
机译:聚合酶链反应(PCR)对于扩增具有临床,生物学或法医相关性的DNA或RNA靶序列至关重要。尽管已经证明外在法布里-珀罗干涉仪(EFPI)足以用于非接触式温度感测,但难以定义半反射,对PCR相容性无反应性和对热键合粘附的反射表面的困难限制了其开发。通过在微流体腔室表面上合并使用铂纳米粒子单层的热驱动自组装制造的反射表面,可增强EFPI信号,从而允许使用红外介导加热的非接触式微流体温度控制仪器,对流强制风冷和干扰物温度感测。干涉仪最初是在PCR室中用微型铜-常数热电偶校准的,取决于室的深度,其温度灵敏度为-22.0至-32.8 nm·°C〜(-1)。通用校准可在任意尺寸的任何设备中进行精确的温度控制,从而在各种应用中具有多功能性。独特的是,这种用于PCR热循环的非接触温度控制可用于STR基因座的扩增,以进行人类基因分析,其中成功地扩增了9个STR基因座,可使用基于EFPI的非接触热循环进行人识别。

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