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SAW Sensor System with Micro-Fluidic Channels to Detect DNA Molecules

机译:看到具有微流体通道的传感器系统,以检测DNA分子

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We developed a surface acoustic wave (SAW) sensor system for detection of the immobilization and hybridization of DNA (deoxyribonucleic acid) molecules. The experiments of DNA immobilization and hybridization were performed with 15-mer oligonucleotides (probe and complementary target DNA). The sensor consists of twin SAW delay line oscillators (sensing channel and reference channel) fabricated on 36 deg rotated Y-cut X-propagation LiTaO_(3) piezoelectric single crystals. Center frequency of the SAW oscillators is 200 MHz. The relative change in the frequency of the two oscillators was monitored to detect the immobilization of a probe DNA with thiol group on an Au coated delay line of the SAW device and the hybridization between a target DNA and the immobilized probe DNA in pH 7.4 PBS (phosphate buffered saline) solution. The target solution was continuously flowing over the probe DNA layer via micro-fluidic channels made of polyimide tubes. The exact amount of the flow was controlled by digital pumps operated by LabView~R software. The sensitivity of the was as high as 136 pg/ml/Hz. It has been normally considered that a SAW sensor is inferior in sensitivity to optical systems in detecting DNA molecules. However, in addition to the inherent advantage of being label-free, the SAW DNA sensor was confirmed by the results in this paper to have promising practical applicability in terms of the sensitivity.
机译:我们开发了一种用于检测DNA(脱氧核糖核酸)分子的固定和杂交的表面声波(SAW)传感器系统。用15-MEL寡核苷酸(探针和互补靶DNA)进行DNA固定化和杂交的实验。传感器由双锯延迟线振荡器(传感通道和参考通道)组成,在36°旋转的Y切割X型X型传播LiTOO_(3)压电单晶中制造。锯振荡器的中心频率为200 MHz。监测两个振荡器的频率的相对变化,以检测探针DNA与硫醇基在SAW器件的Au涂覆的延迟线上固定巯基,靶DNA和固定化探针DNA在pH7.4 PBS中的杂交(磷酸盐缓冲盐水)溶液。通过由聚酰亚胺管制成的微流体通道连续地在探针DNA层上连续流动靶溶液。流量的确切量由LabVIEW〜R软件操作的数字泵控制。敏感性高达136pg / ml / hz。通常认为,在检测DNA分子中,锯传感器对光学系统的敏感性较差。然而,除了无标记的固有优势之外,通过本文的结果证实了锯DNA传感器,以便在敏感性方面具有很有希望的实际适用性。

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