A nanofluidic system for massively parallel PCR

SPIE MOEMS-MEMS Pub Date : 2008-02-07 DOI:10.1117/12.772243
C. Brenan, Tom B. Morrison, Douglas Roberts, J. Hurley
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引用次数: 1

Abstract

Massively parallel nanofluidic systems are lab-on-a-chip devices where solution phase biochemical and biological analyses are implemented in high density arrays of nanoliter holes micro-machined in a thin platen. Polymer coatings make the interior surfaces of the holes hydrophilic and the exterior surface of the platen hydrophobic for precise and accurate self-metered loading of liquids into each hole without cross-contamination. We have created a "nanoplate" based on this concept, equivalent in performance to standard microtiter plates, having 3072 thirty-three nanoliter holes in a stainless steel platen the dimensions of a microscope slide. We report on the performance of this device for PCR-based single nucleotide polymorphism (SNP) genotyping or quantitative measurement of gene expression by real-time PCR in applications ranging from plant and animal diagnostics, agricultural genetics and human disease research.
大规模平行PCR的纳米流体系统
大规模并行纳米流体系统是芯片上的实验室设备,其中液相生化和生物分析是在薄板上微加工的纳米孔的高密度阵列中实现的。聚合物涂层使孔的内表面亲水,而压板的外表面疏水,以便精确和准确地将液体装载到每个孔中,而不会交叉污染。基于这一概念,我们创造了一种“纳米板”,其性能与标准的微量滴定板相当,在不锈钢板上有3072 - 33个纳米孔,大小与显微镜载玻片相当。我们报道了该装置的性能,用于基于PCR的单核苷酸多态性(SNP)基因分型或实时PCR的基因表达定量测量,应用范围从动植物诊断,农业遗传学和人类疾病研究。
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