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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Sequence-specific sepsis-related DNA capture and fluorescent labeling in monoliths prepared by single-step photopolymerization in microfluidic devices
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Sequence-specific sepsis-related DNA capture and fluorescent labeling in monoliths prepared by single-step photopolymerization in microfluidic devices

机译:在微流体装置中单步光聚合制备的单步光聚合制备的甲状腺脓毒症相关的DNA捕获和荧光标记

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摘要

Fast determination of antibiotic resistance is crucial in selecting appropriate treatment for sepsis patients, but current methods based on culture are time consuming. We are developing a microfluidic platform with a monolithic column modified with oligonucleotides designed for sequence-specific capture of target DNA related to the Klebsiella pneumoniae carbapenemase (KPC) gene. We developed a novel single-step monolith fabrication method with an acrydite-modified capture oligonucleotide in the polymerization mixture, enabling fast monolith preparation in a microfluidic channel using UV photopolymerization. These prepared columns had a threefold higher capacity compared to monoliths prepared in a multistep process involving Schiff-base DNA attachment. Conditions for denaturing, capture and fluorescence labeling using hybridization probes were optimized with synthetic 90-mer oligonucleotides. These procedures were applied for extraction of a PCR amplicon from the KPC antibiotic resistance gene in bacterial lysate obtained from a blood sample spiked with E. coli. The results showed similar eluted peak areas for KPC amplicon extracted from either hybridization buffer or bacterial lysate. Selective extraction of the KPC DNA was verified by real time PCR on eluted fractions. These results show great promise for application in an integrated microfluidic diagnostic system that combines upstream blood sample preparation and downstream single-molecule counting detection. (C) 2018 Elsevier B.V. All rights reserved.
机译:快速测定抗生素抗性对于选择适当治疗的败血症患者来说至关重要,但基于培养的目前的方法是耗时的。我们正在开发一种微流体平台,其具有由设计用于与Klebsiella肺结核酶(KPC)基因相关的靶DNA的靶DNA的序列特异性捕获的单核苷酸。我们开发了一种新型单步单片制造方法,具有聚合混合物中的丙烯酸酯改性的捕获寡核苷酸,通过UV光聚合使微流体通道中的快速整体制备。与在涉及席克基碱基DNA附件的多步骤过程中制备的单氧化钛相比,这些制备的柱具有三倍的容量。使用杂交探针的变性,捕获和荧光标记的条件用合成90-MEL寡核苷酸进行了优化。将这些程序应用于从KPC抗生素抗性基因中提取PCR扩增子,从加入大肠杆菌的血液样品获得的细菌裂解物中。结果表明,从杂交缓冲液或细菌裂解物中提取的KPC扩增子的类似洗脱峰面积。通过对洗脱级分的实时PCR验证KPC DNA的选择性提取。这些结果对于在集成的微流体诊断系统中施用具有很大的希望,该系统结合上游血液样品制备和下游单分子计数检测。 (c)2018年elestvier b.v.保留所有权利。

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