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Rapid Real-Time Nucleic Acid Sequence-Based Amplification-Molecular Beacon Platform To Detect Fungal and Bacterial Bloodstream Infections

机译:基于实时核酸序列的快速扩增-分子信标平台,以检测真菌和细菌的血流感染

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Bloodstream infections (BSIs) are a significant cause of morbidity and mortality. Successful patient outcomes are diminished by a failure to rapidly diagnose these infections and initiate appropriate therapy. A rapid and reliable diagnostic platform of high sensitivity is needed for the management of patients with BSIs. The combination of an RNA-dependent nucleic acid sequence-based amplification and molecular beacon (NASBA-MB) detection system in multiplex format was developed to rapidly detect medically important BSI organisms. Probes and primers representing pan-gram-negative, pan-gram-positive, pan-fungal, pan-Candida, and pan-Aspergillus organisms were established utilizing 16S and 28S rRNA targets for bacteria and fungi, respectively. Two multiplex panels were developed to rapidly discriminate bacterial or fungal infections at the subkingdom/genus level with a sensitivity of 1 to 50 genomes. A clinical study was performed to evaluate the accuracy of this platform by evaluating 570 clinical samples from a tertiary-care hospital group using blood bottle samples. The sensitivity, specificity, and Youden's index values for pan-gram-positive detection and pan-gram-negative detection were 99.7%, 100%, 0.997 and 98.6%, 95.9%, 0.945, respectively. The positive predictive values (PPV) and the negative predictive values (NPV) for these two probes were 100, 90.7, and 99.4, 99.4, respectively. Pan-fungal and pan-Candida probes showed 100% sensitivity, specificity, PPV, and NPV, and the pan-Aspergillus probe showed 100% NPV. Robust signals were observed for all probes in the multiplex panels, with signal detection in <15 min. The multiplex real-time NASBA-MB assay provides a valuable platform for the rapid and specific diagnosis of bloodstream pathogens, and reliable pathogen identification and characterization can be obtained in under 3 h.
机译:血流感染(BSI)是发病率和死亡率的重要原因。未能快速诊断出这些感染并无法开始适当的治疗会降低成功的患者预后。需要快速,可靠的高灵敏度诊断平台来管理BSI患者。开发了以RNA依赖的核酸序列为基础的扩增和分子信标(NASBA-MB)多重检测系统的组合,可快速检测具有医学重要性的BSI生物。利用16S和28S rRNA建立了代表泛革兰氏阴性,泛革兰氏阳性,泛真菌,泛念珠菌和泛曲霉生物的探针和引物分别作为细菌和真菌的目标。开发了两个多重面板以快速区分亚属/属水平的细菌或真菌感染,敏感性为1至50个基因组。进行了一项临床研究,以评估该平台的准确性,方法是使用血瓶样本评估三级医院组的570份临床样本。 Pan-gram阳性检测和Pan-gram阴性检测的灵敏度,特异性和尤登指数值分别为99.7%,100%,0.997和98.6%,95.9%,0.945。这两种探针的阳性预测值(PPV)和阴性预测值(NPV)分别为100、90.7和99.4、99.4。泛真菌和泛 Candida 探针显示出100%的敏感性,特异性,PPV和NPV,泛曲霉探针显示出100%的NPV。对于多路复用面板中的所有探针,均观察到了稳定的信号,信号检测时间不到15分钟。多重实时NASBA-MB测定法为快速,特异性地诊断血流病原体提供了有价值的平台,并且可以在3小时内获得可靠的病原体鉴定和表征。

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