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A magnetic bead-based assay for the rapid detection of methicillin-resistant Staphylococcus aureus by using a microfluidic system with integrated loop-mediated isothermal amplification

机译:基于磁珠的测定法,通过使用带有集成环介导的等温扩增的微流体系统,快速检测耐甲氧西林的金黄色葡萄球菌

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摘要

This study reports a new diagnostic assay for the rapid detection of methicillin-resistant Staphylococcus aureus (MRSA) by combing nucleic acid extraction and isothermal amplification of target nucleic acids in a magnetic bead-based microfluidic system. By using specific probe-conjugated magnetic beads, the target deoxyribonucleic acid (DNA) of the MRSA can be specifically recognized and hybridized onto the surface of the magnetic beads which are then mixed with clinical sample lysates. This is followed by purifying and concentrating the target DNA from the clinical sample lysates by applying a magnetic field. Nucleic acid amplification of the target genes can then be performed by the use of a loop-mediated isothermal amplification (LAMP) process via the incorporation of a built-in micro temperature control module, followed by analyzing the optical density (OD) of the LAMP amplicons using a spectrophotometer. Significantly, experimental results show that the limit of detection (LOD) for MRSA in the clinical samples is approximately 10 fg μL~(-1) by performing this diagnostic assay in the magnetic bead-based microfluidic system. In addition, the entire diagnostic protocol, from bio-sample pre-treatment to optical detection, can be automatically completed within 60 min. Consequently, this miniature diagnostic assay may become a powerful tool for the rapid purification and detection of MRSA and a potential point-of-care platform for detection of other types of infections.
机译:这项研究报告了一种新的诊断测定方法,该方法可通过在基于磁珠的微流体系统中结合核酸提取和目标核酸的等温扩增,快速检测耐甲氧西林的金黄色葡萄球菌(MRSA)。通过使用特异性的探针偶联磁珠,可以特异性识别MRSA的目标脱氧核糖核酸(DNA)并杂交到磁珠表面,然后与临床样品裂解液混合。随后,通过施加磁场从临床样品裂解物中纯化和浓缩靶DNA。然后可以通过结合内置的微温控模块,使用环介导的等温扩增(LAMP)过程,对靶基因进行核酸扩增,然后分析LAMP的光密度(OD)使用分光光度计进行扩增。重要的是,实验结果表明,通过在基于磁珠的微流体系统中进行此诊断测定,临床样品中MRSA的检出限(LOD)约为10 fgμL〜(-1)。此外,从生物样品预处理到光学检测的整个诊断方案都可以在60分钟内自动完成。因此,这种微型诊断测定法可能会成为快速纯化和检测MRSA的有力工具,并可能成为检测其他类型感染的潜在即时服务平台。

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