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An integrated microfluidic system for identification of live mycobacterium tuberculosis by real-time polymerase chain reaction

机译:一种集成的微流体系统,通过实时聚合酶链式反应鉴定核心结核菌的活性分枝杆菌

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Mycobacterium tuberculosis (TB) infection poses a huge challenge worldwide. It is challenging for rapid identification of TB due to its low growth rate, and therefore it could be widely spread. For this reason, a novel combination of propidium monoazide (PMA) and real-time polymerase chain reaction (RT-PCR) was reported in this work for fast detection of live TB. Experimental results showed that the PMA-RT-PCR protocol can detect live TB with a detection limit as low as 14 colony formation units (CFU)/reaction by measuring the threshold cycle number (Ct value) in a calibration curve. Furthermore, PMA could be used successfully to distinguish dead TB such that no PCR products could be generated. More importantly, all the procedure could be finished within 2 hours. This is the first time that an integrated microfluidic system was demonstrated to use molecular diagnostics for fast detection of TB and could be potentially used for prognosis monitoring of TB treatment.
机译:结核分枝杆菌(TB)感染在全世界造成巨大挑战。由于其低增长率,快速鉴定结核病是挑战性的,因此它可以广泛传播。因此,在这项工作中报道了一种新的单氮化物(PMA)和实时聚合酶链反应(RT-PCR)的新组合,以便快速检测活TB。实验结果表明,通过在校准曲线中测量阈值循环数(CT值),PMA-RT-PCR协议可以检测具有低至14个菌落形成单元(CFU)/反应的检测极限的活TB。此外,PMA可以成功地使用以区分死TB,使得不能产生PCR产物。更重要的是,所有程序都可以在2小时内完成。这是第一次证明了集成的微流体系统使用分子诊断以快速检测TB,并且可能用于TB治疗的预后监测。

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