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Rapid molecular diagnosis of bacterial infection using integrated lab-on-a-disc

机译:使用综合实验室磁盘快速分子诊断细菌感染

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Bacterial infection is a disaster leading to high fatal rate in intensive caring unit. Rapid profiling of infectious bacteria is necessary for applying the correct medication. Current gold standard using plate inoculation is inaccurate, time-consuming and labour-intensive. Therefore we have developed a molecular diagnostic approach to target marker DNA of the infectious bacteria for rapid profiling. A micro-fiuidic platform lab-on-a-disc (LOAD) has been adopted because using one simple spinning action can provide highly controllable centrifugation drive force for the actuation of samples and reagents anywhere within the boundary of the disc. When centrifugal force-triggered valve is applied, complex sequential flow of liquid can be controlled with various centrifugal force. This will enable parallel execution of many reactions simultaneously with minimal complexity in the design of fluidic pumping and flow control. We report an integrated LOAD for direct sample-to-answer applications-fully automated assay from patient's sample input to detection of signal output. The integrated LOAD with PDMS-made microfludic disc performs three major functions, namely DNA extraction, LAMP reaction and detection. Using microfluidics technology, target bacteria can be detected using as little as 10 uL blood sample loaded into sample loading site. The DNA release after cell lysis in heating site is bound on the silica membrane. After washing, the purified DNA elution is subjected to LAMP reaction to amplify the target genetic sequence. Loop-mediated isothermal amplification (LAMP) is an isothermal nucleic acid amplification method where reaction occurs under 65 °C. The amplified signal is reported by DNA binding fluorescent dye. Our prototype shows high yield and purity of bacterial DNA from clinical samples such as blood. We demonstrated the detection of Acinetobacter baumanii, which is one of the key pathogens resulting in hospital-acquired infections, in clinical blood sample using the LOAD platform. Fast signal detection and active temperature control within the LOAD platform has also enabled real-time LAMP targeting of specific DNA sequences as barcodes to identify infected bacterial species. We found the detection sensitivity of LAMP using DNA is 10~(-15) g, while that of bacteria concentration is 10~2 cfu/ml. The system is capable of providing bacterial DNA profiling within 2 hours.
机译:细菌感染是一场导致密集护理单位高致命率的灾难。申请正确用药需要快速探析感染性细菌。使用板接种的当前金标是不准确,耗时和劳动密集型的。因此,我们已经开发了一种分子诊断方法来靶向传染性细菌的标志性DNA以快速分析。已经采用了一种微型纤胺平台实验室 - 盘(负载),因为使用一个简单的纺纱作用,可以提供高度可控的离心驱动力,用于在盘边界内的任何位置致动样品和试剂。当施加离心力触发阀时,可以用各种离心力控制复杂的液体流动。这将使在流体泵送和流量控制的设计中同时进行许多反应的平行执行。我们报告了一种用于直接采样 - 应答应用程序的集成负载 - 从患者的样本输入到检测信号输出的样本输入完全自动化。具有PDMS制造的微型光盘的集成负载进行三个主要功能,即DNA提取,灯反应和检测。使用Microfluidics Technology,可以使用少至10μl血液样品中载入样品装载位点的10μl血液样品来检测靶细菌。在加热位点中细胞裂解后的DNA释放在二氧化硅膜上结合。洗涤后,对纯化的DNA洗脱进行灯反应以扩增靶遗传序列。环介导的等温扩增(灯)是一种等温核酸扩增方法,其中在65℃下发生反应。通过DNA结合荧光染料报道扩增的信号。我们的原型显示来自患有血液的临床样品的细菌DNA的高产量和纯度。我们证明了鲍曼肺杆菌的检测,这是使用负载平台的临床血液样本导致医院收购感染的关键病原体之一。载荷平台内的快速信号检测和主动温度控制还使实时灯靶向特定的DNA序列作为条形码以识别受感染的细菌种类。我们发现使用DNA的灯的检测灵敏度为10〜(-15 )g,而细菌浓度为10〜2 cfu / ml。该系统能够在2小时内提供细菌DNA分析。

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