首页> 外文期刊>The Journal of molecular diagnostics: JMD >Combined molecular gram typing and high-resolution melting analysis for rapid identification of a syndromic panel of bacteria responsible for sepsis-associated bloodstream infection
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Combined molecular gram typing and high-resolution melting analysis for rapid identification of a syndromic panel of bacteria responsible for sepsis-associated bloodstream infection

机译:结合分子克分型和高分辨率熔解分析,快速鉴定与败血症相关的血流感染负责的细菌综合症

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Effective diagnosis and treatment of bloodstream infections are often hampered by a lack of time-critical information from blood cultures. Molecular techniques aimed at the detection of circulating pathogen DNA have the potential to dramatically improve the timeliness of infection diagnosis. Our aim in this study was to establish a rapid, low-cost PCR approach using high-resolution melting analysis to identify a syndromic panel of 21 pathogens responsible for most bloodstream bacterial infections encountered in critical care environments. A broad-range, real-time PCR technique that combines primers for molecular Gram classification and high-resolution melting analysis in a single run was established. The differentiation of bacterial species was achieved using a multiparameter, decision-tree approach that was based on Gram type, grouping according to melting temperature, and sequential comparisons of melting profiles against multiple reference organisms. A preliminary validation study was undertaken by blinded analysis of 53 consecutive bloodstream isolates from a clinical microbiology laboratory. Fifty isolates contained organisms that were present in the panel, and 96% of these were identified correctly at the genus or species level. A correct Gram classification was reported for all 53 isolates. This technique shows promise as a cost-effective tool for the timely identification of bloodstream pathogens, allowing clinicians to make informed decisions on appropriate antibiotic therapies at an earlier stage.
机译:血液感染缺乏对时间要求严格的信息,常常阻碍了对血液感染的有效诊断和治疗。旨在检测循环病原体DNA的分子技术具有极大地提高感染诊断及时性的潜力。我们在这项研究中的目的是建立一种使用高分辨率熔解分析的快速,低成本的PCR方法,以鉴定由21种病原体组成的综合症候群,这些病原体负责危重护理环境中遇到的大多数血液细菌感染。建立了一种宽范围的实时PCR技术,该技术可在一次运行中结合用于分子革兰氏分类和高分辨率熔解分析的引物。使用基于革兰氏类型的多参数决策树方法,根据解链温度进行分组以及针对多个参照生物的解链谱进行顺序比较,可以实现细菌种类的分化。通过对来自临床微生物学实验室的53个连续血液分离株进行盲法分析,进行了初步验证研究。五十种分离物中含有存在于面板中的生物,其中96%在属或种水平上被正确鉴定。据报告,所有53种分离物的革兰氏分类正确。这项技术显示出有望作为一种经济有效的工具来及时识别血流病原体,从而使临床医生能够在早期阶段就适当的抗生素治疗做出明智的决定。

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