首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Multiplex detection and genotyping of pathogenic bacteria on paper-based biosensor with a novel universal primer mediated asymmetric PCR
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Multiplex detection and genotyping of pathogenic bacteria on paper-based biosensor with a novel universal primer mediated asymmetric PCR

机译:新型通用引物介导的不对称PCR在纸质生物传感器上对病原菌进行多重检测和基因分型

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摘要

Traditionary multiplex asymmetric polymerase chain reaction (PCR) can be applied to detect multiplex target organisms simultaneously, but complex optimizations of primer concentrations and staggered additions of primers are required to achieve equal amplification of multiplex genes. To overcome this shortcoming, we propose a novel method based on multiplex asymmetric PCR and paper-based nucleic acid diagnostics (PBNAD). In the asymmetric PCR, a universal primer was introduced to break the bottlenecks of low sensitivity and self-inhibition among different sets of primers. Amplification using the novel multiplex asymmetric PCR boosted the quantity of single-stranded amplicons, and the amplified products contained the same sequence at the 5' end. Therefore, only one gold nanoparticle-based signal probe was needed for the simultaneous detection of three genes using the PBNAD platform, and the detection signals could be observed with the naked eye. With this highly efficient, novel multiplex asymmetric PCR, as little as 1 pg/mu L genomic DNA can be detected. This method can also be applied to genotyping for reliable epidemiological investigations. This proof-of-concept study highlights the potential of the PBNAD platform for cost- and labor-effective applications in the detection of pathogenic bacteria. (C) 2015 Elsevier B.V. All rights reserved.
机译:传统多重多重不对称聚合酶链反应(PCR)可用于同时检测多重目标生物,但是要实现多重基因的均等扩增,需要对引物浓度进行复杂的优化,并需要错开引物。为克服此缺点,我们提出了一种基于多重不对称PCR和基于纸张的核酸诊断(PBNAD)的新方法。在不对称PCR中,引入通用引物以打破不同引物组之间低灵敏度和自我抑制的瓶颈。使用新型多重不对称PCR的扩增提高了单链扩增子的数量,并且扩增的产物在5'末端包含相同的序列。因此,使用PBNAD平台同时检测三个基因只需要一个基于金纳米粒子的信号探针,并且可以用肉眼观察到检测信号。使用这种高效,新颖的多重不对称PCR,可以检测到低至1 pg /μL的基因组DNA。该方法还可用于可靠的流行病学调查的基因分型。这项概念验证研究突出了PBNAD平台在检测病原菌方面具有成本效益和劳动效率的潜力。 (C)2015 Elsevier B.V.保留所有权利。

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