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A Novel Handheld Electrochemical Analyzer System Interfaced to a Smartphone

机译:一个新颖的手持电化学分析仪系统接口到智能手机

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Detailed in this paper is the design of a novel handheld electrochemical analyzer system interfaced to a smart phone, which provides versatile and cost-effective solution for real-time sensing applications. It was characterised for electron transfer events associated with chemical and biological samples. The presented design is implemented based on the Arduino Nano open source electronics prototyping platform. The versatility of the instrument is further demonstrated by employing the electrochemical analyser to a modified electrochemical cell which formed the basis of a DNA biosensor. Cyclic voltammetry technique was used to impose a triangular waveform on an electrochemical cell and the resulting current through the cell was then monitored. The DNA biosensor generated unique electrical signals in real-time between complementary and non-complementary oligonucleotides sequences of the Bacillus cereus DNA. The effects of hybridization and non-specific binding were compared when the probe DNA molecules were immobilized on a conducting polymer matrix. The results showed that the probe DNA immobilized using electrochemical adsorption yielded better hybridization signals compared to other immobilization methods. The performance of the DNA sensor proved to be effective in terms of selectivity, sensitivity and reproducibility of hybridization events. Analysis of these DNA probes showed that the minimum level of detection was 33.3 pg/ml.
机译:详细介绍了一个关于智能手机的新型手持电化学分析仪系统的设计,为实时感测应用提供了多功能和经济高效的解决方案。其特征在于与化学和生物样品相关的电子转移事件。所提出的设计是基于Arduino Nano开源电子原型平台实现的。通过使用电化学分析仪对形成DNA生物传感器的基础的改性电化学电池,进一步证明了仪器的多功能性。使用循环伏安法技术在电化学电池上施加三角波形,然后监测通过细胞的通过电池的电流。 DNA生物传感器在芽孢杆菌DNA的互补和非互补寡核苷酸序列之间实时产生独特的电信号。当探针DNA分子固定在导电聚合物基质上时比较杂交和非特异性结合的影响。结果表明,与其他固定方法相比,使用电化学吸附固定的探针DNA产生更好的杂交信号。 DNA传感器的性能证明在杂交事件的选择性,敏感性和再现性方面是有效的。对这些DNA探针的分析表明,最低检测水平为33.3pg / ml。

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