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High-Throughput Mycobacterial Interspersed Repetitive-Unit–Variable-Number Tandem-Repeat Genotyping for Mycobacterium tuberculosis Epidemiological Studies

机译:高通量结核分枝杆菌穿插重复单位-可变数目串联重复基因分型对结核分枝杆菌的流行病学研究

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摘要

The emergence of drug-resistant forms of tuberculosis (TB) represents a major public health concern. Understanding the transmission routes of the disease is a key factor for its control and for the implementation of efficient interventions. Mycobacterial interspersed repetitive-unit–variable-number tandem-repeat (MIRU-VNTR) marker typing is a well-described method for lineage identification and transmission tracking. However, the conventional manual genotyping technique is cumbersome and time-consuming and entails many risks for errors, thus hindering its implementation and dissemination. We describe here a new approach using the QIAxcel system, an automated high-throughput capillary electrophoresis system that also carries out allele calling. This automated method was assessed on 1,824 amplicons from 82 TB isolates and tested with sets of markers of 15 or 24 loci. Overall allele-calling concordance between the methods from 140 to 1,317 bp was 98.9%. DNA concentrations and repeatability and reproducibility performances showed no biases in allele calling. Furthermore, turnaround time using this automated system was reduced by 81% compared to the conventional manual agarose gel method. In sum, this new automated method facilitates MIRU-VNTR genotyping and provides reliable results. Therefore, it is well suited for field genotyping. The implementation of this method will help to achieve accurate and cost-effective epidemiological studies, especially in countries with a high prevalence of TB, where the high number of strains complicates the surveillance of circulating lineages and requires efficient interventions to be carried out in an urgent manner.
机译:耐药性结核病(TB)的出现代表了主要的公共卫生问题。了解疾病的传播途径是控制和实施有效干预措施的关键因素。分枝杆菌散布的重复单位-可变数目串联重复(MIRU-VNTR)标记分型是沿袭鉴定和传播追踪的一种描述充分的方法。然而,常规的手动基因分型技术麻烦且耗时,并且存在许多错误风险,从而阻碍了其实施和传播。我们在这里介绍一种使用QIAxcel系统的新方法,该系统是一种自动化的高通量毛细管电泳系统,还可以执行等位基因调用。该自动化方法在来自82 TB分离株的1,824个扩增子上进行了评估,并用15个或24个基因座的标记集进行了测试。从140到1,317 bp的方法之间总体等位基因调用一致性为98.9%。 DNA浓度以及重复性和再现性性能在等位基因检出中没有偏倚。此外,与传统的手动琼脂糖凝胶方法相比,使用该自动化系统的周转时间减少了81%。总之,这种新的自动化方法有助于MIRU-VNTR基因分型并提供可靠的结果。因此,它非常适合于现场基因分型。这种方法的实施将有助于实现准确且具成本效益的流行病学研究,尤其是在结核病流行率高的国家,在这些国家,大量的毒株使循环血统的监测复杂化,需要在紧急情况下采取有效的干预措施方式。

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