Safarkar Roya, Mehrabadi Jalil Fallah, Noormohammadi Zahra, Mirnejad Reza
Department of Biology, Science and Research Branch, Islamic Azad University, Tehran, Iran.
The Lister Laboratory of Microbiology, Tehran, Iran.
J Clin Lab Anal. 2017 Nov;31(6). doi: 10.1002/jcla.22126. Epub 2017 Feb 26.
Sexually transmitted diseases easily spread among sexually active people and often have no symptoms. Rapid and accurate method for detecting these infections are necessary in early stages. The traditional detection methods of them are difficult and time-consuming.
In this study, multiplex real time PCR was optimized for rapid identification of Chlamydia trachomatis and Mycoplasma hominis in a single tube and was performed with our designed primers. The sensitivity test was carried out to designed primers with diluted genomic DNA. To defined the specificity, non STD bacteria were used as DNA template.
This study indicated that the developed multiplex real time PCR can be an effective alternative procedure to the conventional methods for rapid and accurate identification of C Chlamydia trachomatis and Mycoplasma hominis. Multiplex real-time PCR Results of them were checked with melting curves. The sensitivity of our designed primer by multiplex real time PCR for Chlamydia trachomatis and Mycoplasma hominis were 4.78×10 and 8.35×10 , respectively, Which the primers did not amplify any product from a non-STD species.
Multiplex real time PCR by our new primers and analysis of melting curves were successfully usable for rapid and accurate detection of Chlamydia trachomatis and Mycoplasma hominis. This assay instead of traditional culture method, has considerable potential to be rapid, accurate and highly sensitive molecular diagnostic tool for simultaneous and direct detection.
性传播疾病易于在性活跃人群中传播,且通常没有症状。在早期阶段需要快速准确的方法来检测这些感染。它们的传统检测方法既困难又耗时。
在本研究中,对多重实时聚合酶链反应(PCR)进行了优化,以便在单个试管中快速鉴定沙眼衣原体和解脲脲原体,并使用我们设计的引物进行检测。用稀释的基因组DNA对设计的引物进行敏感性测试。为确定特异性,使用非性传播疾病(STD)细菌作为DNA模板。
本研究表明,所开发的多重实时PCR可以成为一种有效的替代方法,替代传统方法来快速准确地鉴定沙眼衣原体和解脲脲原体。通过熔解曲线检查它们的多重实时PCR结果。我们设计的引物通过多重实时PCR对沙眼衣原体和解脲脲原体的敏感性分别为4.78×10和8.35×10,且这些引物未从非STD物种中扩增出任何产物。
使用我们的新引物进行多重实时PCR以及熔解曲线分析可成功用于快速准确地检测沙眼衣原体和解脲脲原体。该检测方法而非传统培养方法,有潜力成为一种快速、准确且高度灵敏的分子诊断工具,用于同时直接检测。