Zhao Yanan, Park Steven, Kreiswirth Barry N, Ginocchio Christine C, Veyret Raphaël, Laayoun Ali, Troesch Alain, Perlin David S
Public Health Research Institute, UMDNJ-New Jersey Medical School, Newark, NJ 07103, USA.
J Clin Microbiol. 2009 Jul;47(7):2067-78. doi: 10.1128/JCM.02230-08. Epub 2009 Apr 29.
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.
血流感染(BSIs)是发病和死亡的重要原因。未能快速诊断这些感染并启动适当治疗会降低患者的治疗成功率。对于血流感染患者的管理,需要一个高灵敏度的快速可靠诊断平台。开发了基于RNA依赖性核酸序列扩增和分子信标(NASBA-MB)的多重检测系统,以快速检测具有医学重要性的血流感染病原体。分别利用细菌和真菌的16S和28S rRNA靶标,建立了代表全革兰氏阴性菌、全革兰氏阳性菌、全真菌、全念珠菌和全曲霉菌的探针和引物。开发了两个多重检测板,以在亚界/属水平快速区分细菌或真菌感染,灵敏度为1至50个基因组。通过使用血瓶样本评估来自三级医疗医院组的570份临床样本,进行了一项临床研究以评估该平台的准确性。全革兰氏阳性菌检测和全革兰氏阴性菌检测的灵敏度、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。全真菌和全念珠菌探针的灵敏度、特异性、PPV和NPV均为100%,全曲霉菌探针的NPV为100%。在多重检测板中观察到所有探针都有强烈信号,信号检测时间<15分钟。多重实时NASBA-MB检测为血流病原体的快速特异性诊断提供了一个有价值的平台,并且可以在3小时内获得可靠的病原体鉴定和特征分析结果。