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使用不对称PCR和多重侧向流动试纸条同时可视化检测KPC和NDM碳青霉烯酶编码基因

Simultaneous and Visual Detection of KPC and NDM Carbapenemase-Encoding Genes Using Asymmetric PCR and Multiplex Lateral Flow Strip.

作者信息

Lai Wei, Xu Yongjie, Liu Lin, Cao Huijun, Yang Bin, Luo Jie, Fei Ying

机构信息

School of Medical Laboratory, Guizhou Medical University, Guiyang 550004, Guizhou, China.

NHC Key Laboratory of Pulmonary Immunological-Related Diseases, Guizhou Provincial People's Hospital, Guiyang 550002, Guizhou, China.

出版信息

J Anal Methods Chem. 2023 Jul 22;2023:9975620. doi: 10.1155/2023/9975620. eCollection 2023.

Abstract

Carbapenem-resistant (CRE) infections constitute a threat to public health, and KPC and NDM are the major carbapenemases of concern. Rapid diagnostic tests are highly desirable in point-of-care (POC) and emergency laboratories with limited resources. Here, we developed a multiplex lateral flow assay based on asymmetric PCR and barcode capture probes for the simultaneous detection of KPC-2 and NDM-1. Biotinylated barcode capture probes corresponding to the KPC-2 and NDM-1 genes were designed and cast onto two different sensing zones of a nitrocellulose membrane after reacting with streptavidin to prepare a multiplex lateral flow strip. Streptavidin-coated gold nanoparticles (SA-AuNPs) were used as signal reporters. In response to the target carbapenemase genes, biotin-labelled ssDNA libraries were produced by asymmetric PCR, which bond to SA-AuNPs via biotin and hybridise with the barcode capture probe via a complementary sequence, thereby bridging SA-AuNPs and the barcode capture probe to form visible red lines on the detection zones. The signal intensities were proportional to the number of resistance genes tested. The strip sensor showed detection limits of 0.03 pM for the KPC-2 and 0.07 pM for NDM-1 genes, respectively, and could accurately distinguish between KPC-2 and NDM-1 genes in CRE strains. For the genotyping of clinical isolates, our strip exhibited excellent consistency with real-time fluorescent quantitative PCR and gene sequencing. Given its simplicity, cost-effectiveness, and rapid analysis accomplished by the naked eye, the multiplex strip is promising auxiliary diagnostic tool for KPC-2 and NDM-1 producers in routine clinical laboratories.

摘要

耐碳青霉烯类(CRE)感染对公共卫生构成威胁,KPC和NDM是主要的关注碳青霉烯酶。在资源有限的即时护理(POC)和急诊实验室中,快速诊断测试非常必要。在此,我们开发了一种基于不对称PCR和条形码捕获探针的多重侧向流动分析方法,用于同时检测KPC-2和NDM-1。设计了与KPC-2和NDM-1基因对应的生物素化条形码捕获探针,并在与链霉亲和素反应后,将其浇铸到硝酸纤维素膜的两个不同传感区域上,以制备多重侧向流动试纸条。用链霉亲和素包被的金纳米颗粒(SA-AuNPs)作为信号报告分子。针对目标碳青霉烯酶基因,通过不对称PCR产生生物素标记的单链DNA文库,其通过生物素与SA-AuNPs结合,并通过互补序列与条形码捕获探针杂交,从而将SA-AuNPs和条形码捕获探针桥接起来,在检测区域形成可见的红线。信号强度与测试的耐药基因数量成正比。该试纸条传感器对KPC-2基因的检测限为0.03 pM,对NDM-1基因的检测限为0.07 pM,并且能够准确区分CRE菌株中的KPC-2和NDM-1基因。对于临床分离株的基因分型,我们的试纸条与实时荧光定量PCR和基因测序表现出极好的一致性。鉴于其简单性、成本效益以及可通过肉眼快速分析,该多重试纸条是常规临床实验室中用于检测KPC-2和NDM-1产生菌的有前景的辅助诊断工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2b2/10386901/fc030ccdf2b9/JAMC2023-9975620.001.jpg

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