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Conducting polymer based DNA biosensor for the detection ofthe Bacillus cereus group species

机译:基于聚合物的DNA生物传感器,用于检测芽孢杆菌组种类

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Biosensor designs are emerging at a significant rate and play an increasingly important role in foodborne pathogen detection. Conducting polymers are excellent tools for the fabrication of biosensors and polypyrrole has been used in the detection of biomolecules due to its unique properties. The prime intention of this paper was to pioneer the design and fabrication of a single-strand (ss) DNA biosensor for the detection of the Bacillus cereus (B.cereus) group species. Growth of B. cereus, results in production of several highly active toxins. Therefore, consumption of food containing >106 bacteria/gm may results in emetic and diarrhoeal syndromes. The most common source of this bacterium is found in liquid food products, milk powder, mixed food products and is of particular concern in the baby formula industry. The electrochemical deposition technique, such as cyclic voltammetry, was used to develop and test a model DNA-based biosensor on a gold electrode electropolymerized with polypyrrole. The electrically conducting polymer, polypyrrole is used as a platform for immobilizing DNA (1μg) on the gold electrode surface, since it can be more easily deposited from neutral pH aqueous solutions of pyrrolemonomers. The average current peak during the electrodeposition event is 288μA. There is a clear change in the current after hybridization of the complementary oligonucleotide (6.35μA) and for the noncomplementary oligonucleotide (5.77μA). The drop in current after each event was clearly noticeable and it proved to be effective.
机译:生物传感器设计是新兴的以显著率和播放食源性病原体检测越来越重要的作用。导电聚合物可用于生物传感器和聚吡咯在检测生物分子已经使用的制造很好的工具,由于其独特的性能。本文的主要意图是先驱单链(SS)DNA的生物传感器用于检测蜡状芽孢杆菌(蜡状芽孢杆菌)基团的物种中的设计和制造。蜡样芽胞杆菌的生长,导致生产几种高活性的毒素。因此,含有食物的消费在催吐和腹泻综合征> 106个细菌/克5月的结果。这种细菌最常见的来源在液态食品,奶粉,混合食品被发现,是在婴儿配方奶粉行业特别关注的。电化学沉积技术,如循环伏安法,用于开发和与聚吡咯电聚合金电极测试的基于DNA模型生物传感器。导电聚合物,聚吡咯用作用于固定在金电极表面上的DNA(1微克),因为它可以从pyrrolemonomers的中性pH水溶液中更容易沉积的平台。在电活动中的平均电流峰值为288μA。有互补寡核苷酸(6.35μA)的杂交后和非互补的寡核苷酸(5.77μA)的电流的明显的变化。每个事件后的电流的下降是明显可察觉和它被证明是有效的。

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