Institut Pasteur, National Reference Center for Corynebacteria of the diphtheriae complex, Paris, France.
Institut Pasteur, Biodiversity and Epidemiology of Bacterial Pathogens, Paris, France.
J Med Microbiol. 2019 Oct;68(10):1455-1465. doi: 10.1099/jmm.0.001070. Epub 2019 Sep 3.
Diphtheria is caused by toxigenic strains of , and . For diagnostic purposes, species identification and detection of toxigenic strains (diphtheria toxin ()positive strains) is typically performed using end-point PCR. A faster quadruplex real-time PCR (qPCR) was recently developed (De Zoysa . 2016;65(12):1521-1527). We aimed to improve the quadruplex method by adding a 16S rRNA gene target as an internal processing control, providing confirmation of the presence of bacterial DNA in the assays, thus avoiding the possibility of false-negative reporting. Universal 16S rRNA gene primers and a probe were defined. The novel method was tested using 36 bacterial isolates and 17 clinical samples. Experimental robustness to temperature and reagent concentration variations was assessed. The method allows detection of the gene and distinguishing (including the newly described species ) from and . Complete diagnostic specificity, sensitivity and experimental robustness were demonstrated. The lower limit of detection for , and targets was 1.86 genome copies per 5 µl reaction volume. The method was successfully used on two distinct qPCR technologies (LightCycler 480, Roche Diagnostics and Rotor-Gene Q, Qiagen) and in two laboratories (Institut Pasteur, Paris, France and Public Health England - National Infection Service, London, UK). This work describes validation of the improved qPCR quadruplex method and supports its implementation for the biological diagnosis of diphtheria.
白喉是由 、 和 产生的毒素的菌株引起的。为了诊断目的,通常使用终点 PCR 进行物种鉴定和检测产毒菌株(白喉毒素 ()阳性菌株)。最近开发了一种更快的四重实时 PCR(qPCR)(De Zoysa. 2016;65(12):1521-1527)。我们旨在通过添加 16S rRNA 基因靶标作为内部处理控制来改进四重方法,从而提供对检测中细菌 DNA 存在的确认,从而避免假阴性报告的可能性。定义了通用 16S rRNA 基因引物和探针。使用 36 种细菌分离株和 17 种临床样本对新方法进行了测试。评估了对温度和试剂浓度变化的实验稳健性。该方法允许检测 基因,并区分 和 (包括新描述的物种 )与 和 。完全证明了诊断特异性、敏感性和实验稳健性。 、 和 靶标的检测下限为 5 μl 反应体积中的 1.86 个基因组拷贝。该方法已成功用于两种不同的 qPCR 技术(Roche Diagnostics 的 LightCycler 480 和 Qiagen 的 Rotor-Gene Q)和两个实验室(法国巴黎巴斯德研究所和英国公共卫生英格兰 - 国家传染病服务部)。这项工作描述了改进的 qPCR 四重方法的验证,并支持其用于白喉的生物学诊断。