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Nanoparticles-Based Biosensor Coupled with Multiplex Loop-Mediated Isothermal Amplification for Detection of Staphylococcus aureus and Identification of Methicillin-Resistant S. aureus

机译:基于纳米颗粒的生物传感器与多重环介导的等温扩增用于检测金黄色葡萄球菌和鉴定甲氧西林的金黄色葡萄球菌

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Introduction: Staphylococcus aureus ( S. aureus ), including methicillin-resistant S. aureus (MRSA), is a common human pathogen, which can cause a variety of infections from mild to severe. In this article, a new diagnostic method called multiplex loop-mediated isothermal amplification combined with nanoparticles-based lateral flow biosensor (mLAMP-LFB) has been developed, which was proved to be fast, reliable, and simple for detecting S. aureus , and differentiate MRSA from methicillin-susceptible S. aureus (MSSA). Materials?and?Methods: We designed a set of six primers targeting the nuc gene of S. aureus , and a set of five primers targeting the mecA gene of MRSA. The lateral flow biosensor visually reported the S. aureus -LAMP results within 2 mins. S. aureus species and non- S. aureus species were used to identify the specificity and sensitivity of the assay. Results: The best conditions for LAMP were 50 mins at 63°C, and the sensitivity was 100 fg. No cross-reactivity was shown and the specificity of this assay is 100%. This assay requires 20 mins for DNA preparation, 50 mins for isothermal amplification and 2 mins for biosensor detection. The total time is within 75 mins. Among 96 sputum samples, LAMP-LFB and traditional culture method showed the same results, 8 (8.33%) samples were MRSA-positive, and 9 (9.38%) samples were MSSA-positive. Seven (7.29%) samples were MRSA-positive and 7 (7.29%) were?MSSA-positive by PCR method. Compared with the culture method, diagnostic accuracy of m-LAMP-LFB assay was 100%. The results showed that the m-LAMP-LFB method has better detection ability than the?PCR method. Discussion: In short, this m-LAMP-LFB assay is a specific and sensitive method that can quickly identify S. aureus stains, and distinguish MRSA from MSSA, and can be used as a new molecular method for detection of S. aureus in laboratories.
机译:介绍:含有甲氧西林的金黄色葡萄球菌(MRSA)的金黄色葡萄球菌(MRSA),是一种常见的人类病原体,可引起轻度至严重的各种感染。在本文中,已经开发出一种新的诊断方法,其新的诊断方法已经开发出与纳米颗粒的侧向流动生物传感器(MLAMP-LFB)组合,这被证明是快速,可靠,并且用于检测S.金黄色葡萄球菌和简单将MRSA与Methicililin - 易感金黄色葡萄球菌(MSSA)分化。材料?和呢?方法:我们设计了一组靶向S.UUREUS的NUC基因的一组六个引物,以及靶向MRSA的MECA基因的一组五个引物。横向流动生物传感器在目测上报告了S.UUREUS -LAMP导致2分钟内。 S.UUREUS物种和非金黄色葡萄球菌物种用于鉴定测定的特异性和敏感性。结果:63°C的灯的最佳条件为50分钟,灵敏度为100 FG。没有显示交叉反应性,并且该测定的特异性为100%。该测定需要20分钟的DNA制剂,50分钟用于等温扩增和2分钟的生物传感器检测。总时间在75分钟内。在96个痰液样品中,灯-LFB和传统培养方法显示出相同的结果,8(8.33%)样品是MRSA阳性,9(9.38%)样品是MSSA阳性的。七(7.29%)样品是MRSA阳性,7(7.29%)是αSSA阳性PCR方法。与培养方法相比,M灯-LFB测定的诊断准确性为100%。结果表明,M灯-LFB方法具有比βPCR方法更好的检测能力。讨论:简而言之,该M-Lamp-LFB测定是一种特定和敏感的方法,可以快速鉴定S.UUREUS污渍,并区分MRSA从MSSA,并且可以用作实验室中的S.金黄色葡萄球菌的新分子方法。

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