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首页> 外文期刊>Clinical chemistry and laboratory medicine: CCLM >Rapid methods for diagnosis of bloodstream infections.
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Rapid methods for diagnosis of bloodstream infections.

机译:诊断血液感染的快速方法。

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Direct detection technologies for pathogenic microorganisms are emerging to be applied in the diagnosis of serious bloodstream infections and infections at sterile body sites, as well as for quality control measures prior to the release of sterile blood products and to ascertain microbial safety of food. Standard blood cultures as the current gold standard for detection of bacteraemia/sepsis and other culture-based microbiological identification procedures are comparatively slow and have limited sensitivity for fastidious or slow-growing microorganisms. Rapid nucleic acid-based technologies with PCR amplification or hybridisation probes for specific pathogens, broad-range bacterial or fungal assays, flow cytometry, as well as protein-based characterisation by mass spectrometry, aim at identification of pathogenic microorganisms within minutes to hours. Interpretation of direct detection of panbacterial or panfungal nucleic acids instead of living microorganisms in blood is complex, given the risk of contamination, the ubiquitous presence of bacterial and fungal DNA, and the lack of a gold standard. Since many of the infections at sterile sites, particularly sepsis, are medical emergencies requiring immediate therapeutic responses, rapid technologies could contribute to reduction of morbidity, mortality, and of the economic burden. This review summarises the currently available data on rapid non-culture-based technologies and outlines the potential clinical usefulness in infectious disease diagnosis.
机译:病原微生物的直接检测技术正在被用于诊断严重的血液感染和不育体位点的感染,以及在释放不育血制品之前的质量控制措施以及确定食品的微生物安全性。作为目前用于检测菌血症/败血症和其他基于培养物的微生物鉴定程序的金标准的标准血液培养物相对较慢,并且对挑剔或生长缓慢的微生物的敏感性有限。基于快速核酸的技术,具有针对特定病原体的PCR扩增或杂交探针,广泛的细菌或真菌测定,流式细胞术以及通过质谱进行的基于蛋白质的表征,旨在在数分钟至数小时内鉴定出病原微生物。考虑到存在污染的风险,普遍存在的细菌和真菌DNA以及缺乏金标准,直接检测全细菌或泛真菌核酸而不是血液中的活微生物的解释很复杂。由于无菌部位的许多感染,特别是败血症,都是需要立即做出治疗反应的医疗紧急情况,因此快速的技术可以有助于降低发病率,死亡率和经济负担。这篇综述总结了有关基于非文化的快速技术的当前可用数据,并概述了在传染病诊断中的潜在临床实用性。

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