首页> 美国卫生研究院文献>Journal of Clinical Microbiology >Harmonization of Pulsed-Field Gel Electrophoresis Protocols for Epidemiological Typing of Strains of Methicillin-Resistant Staphylococcus aureus: a Single Approach Developed by Consensus in 10 European Laboratories and Its Application for Tracing the Spread of Related Strains
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Harmonization of Pulsed-Field Gel Electrophoresis Protocols for Epidemiological Typing of Strains of Methicillin-Resistant Staphylococcus aureus: a Single Approach Developed by Consensus in 10 European Laboratories and Its Application for Tracing the Spread of Related Strains

机译:耐甲氧西林金黄色葡萄球菌菌株流行病学分型的脉冲场凝胶电泳方法的统一:由欧洲10个实验室达成共识的单一方法及其在追踪相关菌株扩散中的应用

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摘要

Pulsed-fieldgel electrophoresis (PFGE) is the most common genotypic method used in reference and clinical laboratories for typing methicillin-resistant Staphylococcus aureus (MRSA). Many different protocols have been developed in laboratories that have extensive experience with the technique and have established national databases. However, the comparabilities of the different European PFGE protocols for MRSA and of the various national MRSA clones themselves had not been addressed until now. This multinational European Union (EU) project has established for the first time a European database of representative epidemic MRSA (EMRSA) strains and has compared them by using a new “harmonized” PFGE protocol developed by a consensus approach that has demonstrated sufficient reproducibility to allow the successful comparison of pulsed-field gels between laboratories and the tracking of strains around the EU. In-house protocols from 10 laboratories in eight European countries were compared by each center with a “gold standard” or initial harmonized protocol in which many of the parameters had been standardized. The group found that it was not important to standardize some elements of the protocol, such as the type of agarose, DNA block preparation, and plug digestion. Other elements were shown to be critical, namely, a standard gel volume and concentration of agarose, the DNA concentration in the plug, the ionic strength and volume of running buffer used, the running temperature, the voltage, and the switching times of electrophoresis. A new harmonized protocol was agreed on, further modified in a pilot study in two laboratories, and finally tested by all others. Seven laboratories' gels were found to be of sufficiently good quality to allow comparison of the strains by using a computer software program, while two gels could not be analyzed because of inadequate destaining and DNA overloading. Good-quality gels and inclusion of an internal quality control strain are essential before attempting intercenter PFGE comparisons. A number of clonally related strains have been shown to be present in multiple countries throughout Europe. The well-known Iberian clone has been demonstrated in Belgium, Finland, France, Germany, and Spain (and from the wider HARMONY collection in Portugal, Slovenia, and Sweden). Strains from the United Kingdom (EMRSA-15 and -16) have been identified in several othercountries, and other clonally related strains have also been identified. This highlights the need for closer international collaboration to monitor the spread of current epidemic strains as well as the emergence of new ones.
机译:脉冲场凝胶电泳(PFGE)是参考实验室和临床实验室中最常见的基因分型方法,用于对耐甲氧西林的金黄色葡萄球菌(MRSA)进行分型。在实验室中已经开发了许多不同的协议,这些协议在该技术上拥有丰富的经验并建立了国家数据库。但是,到目前为止,尚未解决欧洲针对MRSA的不同PFGE协议与各个国家MRSA克隆本身之间的可比性。这个跨国的欧洲联盟(EU)项目首次建立了欧洲代表性流行性MRSA(EMRSA)菌株的数据库,并使用一种新的“协调一致”的PFGE协议对它们进行了比较,该协议是通过共识方法开发的,该协议已证明具有足够的可重复性,可实现实验室之间脉冲场凝胶的成功比较以及欧盟周围菌株的追踪。每个中心将来自八个欧洲国家/地区的10个实验室的内部协议与“金标准”或最初的协调协议进行了比较,该协议中许多参数已经标准化。该小组发现标准化协议中的某些要素并不重要,例如琼脂糖的类型,DNA块制备和塞子消化。其他要素也很关键,即标准凝胶体积和琼脂糖浓度,塞子中的DNA浓度,所用运行缓冲液的离子强度和体积,运行温度,电压和电泳切换时间。商定了一个新的统一协议,并在两个实验室进行的一项初步研究中对其进行了修改,最后由所有其他实验室进行了测试。发现有七个实验室的凝胶质量足够好,可以使用计算机软件程序比较菌株,而由于缺乏足够的脱色和DNA超载,无法分析两种凝胶。在尝试中心间PFGE比较之前,高质量的凝胶和内部质量控制菌株的加入是必不可少的。在整个欧洲的多个国家,已经显示出许多与克隆相关的菌株。著名的伊比利亚克隆已在比利时,芬兰,法国,德国和西班牙(以及在葡萄牙,斯洛文尼亚和瑞典更广泛的HARMONY系列中)得到证明。来自英国的菌株(EMRSA-15和-16)已在其他几个国家中鉴定出来,还鉴定了其他克隆相关菌株。这突出表明需要加强国际合作,以监测当前的流行毒株的传播以及新流行株的出现。

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