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用于检测和定量八种牙周细菌病原体的定量聚合酶链反应的优化

Optimization of quantitative polymerase chain reactions for detection and quantification of eight periodontal bacterial pathogens.

作者信息

Decat Ellen, Cosyn Jan, De Bruyn Hugo, Miremadi Reza, Saerens Bart, Van Mechelen Els, Vermeulen Stefan, Vaneechoutte Mario, Deschaght Pieter

机构信息

Biomedical and Exact Sciences, Faculty of Education, Health&Social Work, University College Ghent, Keramiekstraat 80, Ghent, Belgium.

出版信息

BMC Res Notes. 2012 Dec 2;5:664. doi: 10.1186/1756-0500-5-664.

Abstract

BACKGROUND

The aim of this study was to optimize quantitative (real-time) polymerase chain reaction (qPCR) assays for 8 major periodontal pathogens, i.e. Aggregatibacter actinomycetemcomitans, Fusobacterium nucleatum, Parvimonas micros, Porphyromonas gingivalis, Prevotella intermedia, Tanerella forsythia and Treponema denticola, and of the caries pathogen Streptococcus mutans.

RESULTS

Eighteen different primer pairs were analyzed in silico regarding specificity (using BLAST analysis) and the presence of secondary structures at primer binding sites (using mFOLD). The most specific and efficiently binding primer pairs, according to these analyses, were selected for qPCR-analysis to determine amplification efficiency, limit of quantification and intra-run reproducibility. For the selected primer pairs, one for each species, the specificity was confirmed by assessing amplification of DNA extracts from isolates of closely related species. For these primer pairs, the intercycler portability was evaluated on 3 different thermal cyclers (the Applied Biosystems 7300, the Bio-Rad iQ5 and the Roche Light Cycler 480). For all assays on the different cyclers, a good correlation of the standard series was obtained (i.e. r2 ≥ 0.98), but quantification limits varied among cyclers. The overall best quantification limit was obtained by using a 2 μl sample in a final volume of 10 μl on the Light Cycler 480.

CONCLUSIONS

In conclusion, the proposed assays allow to quantify the bacterial loads of S. mutans, 6 periodontal pathogenic species and the genus Fusobacterium.This can be of use in assessing periodontal risk, determination of the optimal periodontal therapy and evaluation of this treatment.

摘要

背景

本研究的目的是优化针对8种主要牙周病原体,即伴放线聚集杆菌、具核梭杆菌、微小单胞菌、牙龈卟啉单胞菌、中间普氏菌、福赛坦纳菌和齿垢密螺旋体,以及龋病病原体变形链球菌的定量(实时)聚合酶链反应(qPCR)检测方法。

结果

对18对不同的引物对进行了计算机模拟分析,评估其特异性(使用BLAST分析)以及引物结合位点二级结构的存在情况(使用mFOLD)。根据这些分析,选择最具特异性且结合效率最高的引物对进行qPCR分析,以确定扩增效率、定量限和批内重复性。对于所选的每种细菌各一对引物,通过评估密切相关菌种分离株DNA提取物的扩增情况来确认其特异性。对于这些引物对,在3种不同的热循环仪(Applied Biosystems 7300、Bio-Rad iQ5和Roche Light Cycler 480)上评估了不同仪器间的可转移性。对于在不同循环仪上进行的所有检测,标准曲线均具有良好的相关性(即r2≥0.98),但不同循环仪的定量限有所不同。在Light Cycler 480上,采用最终体积为10 μl的2 μl样品时,总体定量限最佳。

结论

总之,所提出的检测方法能够对变形链球菌、6种牙周病原菌和梭杆菌属的细菌载量进行定量。这可用于评估牙周风险、确定最佳牙周治疗方案以及评估该治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/992f/3532386/c0fe42209d05/1756-0500-5-664-1.jpg

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