一种基于TaqMan小凹槽结合探针的定量逆转录聚合酶链式反应,用于检测和定量基孔肯雅病毒。

Y Z Lim, B T Teoh, S S Sam, N S Azizan, C S Khor, S S Nor'e, J Abd-Jamil, S AbuBakar
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引用次数: 0

摘要

基孔肯雅病毒(CHIKV)是一种蚊子传播的阿尔法病毒,在全球广泛分布。自2016年以来,CHIKV在印度次大陆和东南亚等多个国家重新出现。早期诊断CHIKV感染的适当诊断工具对于促进患者管理和在疫情爆发的早期控制病毒传播至关重要。因此,开发了一种基于TaqMan小凹槽结合物(MGB)探针的定量逆转录聚合酶链式反应(qRT-PCR)测定法来检测和定量CHIKV。引物和探针是基于730个全球CHIKV序列的保守基因组区域设计的,该区域位于nsP1和nsP2基因之间。然后在计算机上分析了具有730个全球CHIKV序列和13个α病毒的引物和探针的核苷酸错配。在本研究中,引物3'端和探针5'端的最后5个核苷酸被认为是引发的关键区域。计算机分析显示,引物和探针的关键区域与730个全球CHIKV序列的匹配率至少为99.6%。此外,引物和探针分别与13种α病毒显示至少5/20(25.0%)和4/17(23.5%)的核苷酸错配。qRT-PCR检测的扩增效率为100.59%(95%CI=93.06109.33),R2得分为0.957。在95%概率水平下,其检测限(LOD)为16.6个CHIKV RNA拷贝(95%CI=12.9,28.9)。qRT-PCR检测对CHIKV具有特异性,与所有登革热病毒血清型、Getah病毒、Tembusu病毒和寨卡病毒没有交叉反应。qRT-PCR检测的诊断结果与商业三联物检测完全一致(k=1.000,p=0.003),灵敏度为100%(95%CI=61100),特异性为100%(95%CI=44100)。总的来说,所开发的qRT-PCR检测法是快速、灵敏和特异性检测以及定量CHIKV的理想方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A TaqMan minor groove binder probe-based quantitative reverse transcription polymerase chain reaction for detection and quantification of chikungunya virus.

Chikungunya virus (CHIKV) is a mosquito-borne alphavirus with widespread distribution across the globe. Since 2016, CHIKV re-emerged in several countries including Indian subcontinent and Southeast Asia. A proper diagnostic tool for early diagnosis of CHIKV infection is crucial to facilitate patient management and control virus transmission at the earliest stage of outbreak. Therefore, a TaqMan minor groove binder (MGB) probe-based quantitative reverse transcription polymerase chain reaction (qRT-PCR) assay was developed to detect and quantify the CHIKV. The primers and probe were designed based on a conserved genomic region of 730 global CHIKV sequences that is located between nsP1 and nsP2 genes. The nucleotide mismatches of primers and probe with 730 global CHIKV sequences and 13 alphaviruses were then analysed in silico. In this study, the last 5 nucleotides at 3' end of primers and 5' end of probe were considered to be the critical regions for priming. In silico analysis revealed that the critical regions of primers and probe were at least 99.6% matched with the 730 global CHIKV sequences. Besides, the primers and probe showed at least 5/20 (25.0%) and 4/17 (23.5%) nucleotide mismatches with 13 alphaviruses respectively. The amplification efficiency of qRT-PCR assay was 100.59% (95% CI= 93.06, 109.33) with a R2 score of 0.957. Its limit of detection (LOD) at 95% probability level was 16.6 CHIKV RNA copies (95% CI= 12.9, 28.9). The qRT-PCR assay was specific to CHIKV without cross-reacting with all dengue virus serotypes, Getah virus, Tembusu virus and Zika virus. The diagnostic results of qRT-PCR assay were perfectly agreed (k=1.000, p=0.003) with a commercial trioplex assay, with sensitivity of 100% (95% CI= 61, 100) and specificity of 100% (95% CI= 44, 100). Overall, the developed qRT-PCR assay is ideal for rapid, sensitive and specific detection as well as quantification of CHIKV.

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