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Comparison of an Automated Repetitive Sequence-Based PCR Microbial Typing System to Pulsed-Field Gel Electrophoresis for Analysis of Outbreaks of Methicillin-Resistant Staphylococcus aureus

机译:自动化的基于重复序列的PCR微生物分型系统与脉冲场凝胶电泳比较,用于分析耐甲氧西林金黄色葡萄球菌的爆发

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摘要

Rapid and sensitive methods for accurate strain delineation are essential for monitoring and preventing transmission of methicillin-resistant Staphylococcus aureus (MRSA). Pulsed-field gel electrophoresis (PFGE) has been the standard technique for strain typing most bacterial species including MRSA. The goal of this study was to compare the performance of the DiversiLab microbial typing system (Bacterial BarCodes, Inc., Houston, TX) (rep-PCR) to that of PFGE for typing MRSA isolates from five well-defined outbreaks. The DiversiLab rep-PCR assay is a rapid, semiautomated method based on PCR amplification of specific regions between noncoding repetitive sequences in the bacterial genome. rep-PCR was performed according to the manufacturer's recommendations, and the results were analyzed and dendrograms were generated using the DiversiLab analysis software (version 2.1.66a). PFGE was performed and interpreted according to published procedures. rep-PCR results using similarity indices (SI) of 80%, 85%, and 90% were compared to PFGE analysis. In addition, intra- and interrun reproducibility was determined for rep-PCR. Overall, correct assignment to outbreak versus nonoutbreak clusters occurred for 91 of 109 isolates (85% agreement) when using a SI of 85%. For each specific outbreak, concordance between rep-PCR and PFGE ranged from 73% to 100%. There were 18 discrepant results (17%). Fourteen isolates were unique by PFGE, but they were placed in clusters by rep-PCR; the other 4 were placed in clusters different from those assigned by PFGE. Intra- and interrun reproducibility was excellent. Times to results were 12 to 24 h for rep-PCR compared to 2 to 4 days for PFGE. Rapid, standardized results and excellent reproducibility make rep-PCR a valuable tool for use in MRSA investigations. However, since rep-PCR was less discriminatory than PFGE, we recommend that it be used to screen isolates, followed by testing isolates which share the same rep-PCR pattern with a more sensitive method, such as PFGE or multilocus sequence typing.
机译:快速准确地确定菌株应变的方法对于监测和预防耐甲氧西林金黄色葡萄球菌(MRSA)的传播至关重要。脉冲场凝胶电泳(PFGE)已成为对包括MRSA在内的大多数细菌进行菌株分型的标准技术。这项研究的目的是比较DiversiLab微生物分型系统(Bacterial BarCodes,Inc.,Houston,TX)(rep-PCR)与PFGE的性能,以分型来自五个明确爆发的MRSA分离株。 DiversiLab rep-PCR测定法是一种快速,半自动化的方法,其基于细菌基因组中非编码重复序列之间特定区域的PCR扩增。根据制造商的建议进行rep-PCR,然后使用DiversiLab分析软件(2.1.66a版)分析结果并生成树状图。 PFGE是根据公开程序进行和解释的。使用PFGE分析将使用80%,85%和90%的相似性指数(SI)的rep-PCR结果进行了比较。此外,确定了rep-PCR的内部和内部重现性。总体而言,当使用85%的SI时,对109个分离株中的91个(正确率达85%)正确确定了暴发与非暴发群集的分配。对于每个特定的暴发,rep-PCR和PFGE之间的一致性范围为73%至100%。有18个差异结果(17%)。 PFGE有14个分离株是独特的,但通过rep-PCR将它们放在簇中。其他4个与PFGE分配的集群不同。批间和批间的重现性极好。 rep-PCR的结果时间为12至24小时,而PFGE为2至4天。快速,标准化的结果和出色的可重复性使rep-PCR成为用于MRSA研究的有价值的工具。但是,由于rep-PCR的鉴别力不如PFGE,因此我们建议将其用于筛选分离株,然后通过更敏感的方法(例如PFGE或多基因座序列分型)测试具有相同rep-PCR模式的分离株。

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