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16S metagenomics for diagnosis of bloodstream infections: opportunities and pitfalls

机译:16S用于诊断血流感染的Metagenomics:机会和陷阱

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Introduction: Bacterial bloodstream infections (BSI) form a large public health threat worldwide. Current routine diagnosis is based on blood culture (BC) but this technique suffers from limited sensitivity. Molecular diagnostic tools have been developed for identification of bacteria in the blood of BSI patients. 16S metagenomics is an open-ended technique that can detect simultaneously all bacteria in a given sample based on PCR amplification of the 16S ribosomal RNA gene (rDNA) followed by sequencing of the PCR amplicons and taxonomic labeling of the sequence reads at genus or species level.Areas covered: Here we review the studies that have used 16S metagenomics for the identification of bacteria in human blood samples. We also discuss the potential added value of 16S metagenomics in the diagnosis of BSI, challenges as well as future directions for implementation in clinical settings. Expert commentary: 16S metagenomics has the potential to complement conventional BC; however, the technique currently suffers from several technical limitations jeopardizing implementation in routine clinical microbiology laboratories. Further studies are required to assess the cost-efficiency and clinical impact of 16S metagenomics in comparison to BC which remains the gold standard diagnostic method for BSI.
机译:介绍:细菌血流感染(BSI)在全球范围内形成大型公共卫生威胁。目前的常规诊断基于血液培养(BC),但这种技术患有有限的灵敏度。已经开发了分子诊断工具用于鉴定BSI患者的血液中的细菌。 16S偏心组虫是一种开放式技术,可以基于PCR扩增的给定样品中的所有细菌在16S核糖体RNA基因(RDNA)的同时检测所有细菌,然后通过对PCR扩增子和分类标记在属或物种水平上读取序列的分类标记。 areas覆盖:在这里,我们审查了使用16s肌动噬菌体用于鉴定人血液样本中的细菌的研究。我们还在临床环境中诊断BSI,挑战以及未来方向的诊断中讨论了16S次数的潜在附加值。专家评论:16S偏心组合有可能补充常规BC;然而,该技术目前存在危害常规临床微生物实验室实施的几种技术限制。需要进一步的研究来评估16S Metagenomics的成本效率和临床影响,与BC相比,仍然是BSI的黄金标准诊断方法。

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