T2 Biosystems, Lexington, MA 02421, USA.
Sci Transl Med. 2013 Apr 24;5(182):182ra54. doi: 10.1126/scitranslmed.3005377.
Candida spp. cause both local and disseminated infections in immunocompromised patients. Bloodstream infections of Candida spp., known as "candidemia," are associated with a high mortality rate (40%), which is mainly attributed to the long diagnostic time required by blood culture. We introduce a diagnostic platform based on T2 magnetic resonance (T2MR), which is capable of sensitive and rapid detection of fungal targets in whole blood. In our approach, blood-compatible polymerase chain reaction is followed by hybridization of the amplified pathogen DNA to capture probe-decorated nanoparticles. Hybridization yields nanoparticle microclusters that cause large changes in the sample's T2MR signal. With this T2MR-based method, Candida spp. can be detected directly in whole blood, thus eliminating the need for analyte purification. Using a small, portable T2MR detection device, we were able to rapidly, accurately, and reproducibly detect five Candida species within human whole blood with a limit of detection of 1 colony-forming unit/ml and a time to result of <3 hours. Spiked blood samples showed 98% positive agreement and 100% negative agreement between T2MR and blood culture. Additionally, performance of the assay was evaluated on 21 blinded clinical specimens collected serially. This study shows that the nanoparticle- and T2MR-based detection method is rapid and amenable to automation and offers clinicians the opportunity to detect and identify multiple human pathogens within hours of sample collection.
念珠菌属可引起免疫功能低下患者的局部和播散性感染。念珠菌属引起的血流感染,称为“念珠菌血症”,与高死亡率(40%)相关,这主要归因于血培养所需的较长诊断时间。我们引入了一种基于 T2 磁共振(T2MR)的诊断平台,该平台能够在全血中灵敏且快速地检测真菌靶标。在我们的方法中,采用血兼容聚合酶链反应,然后将扩增的病原体 DNA 与捕获探针修饰的纳米颗粒进行杂交。杂交产生纳米颗粒微簇,导致样品的 T2MR 信号发生大的变化。使用这种基于 T2MR 的方法,可以直接在全血中检测到念珠菌属,从而无需进行分析物纯化。使用小型便携式 T2MR 检测设备,我们能够在人类全血中快速、准确和可重复地检测五种念珠菌,检测限为 1 个菌落形成单位/ml,结果时间<3 小时。加标血液样本的 T2MR 与血培养之间的阳性符合率为 98%,阴性符合率为 100%。此外,还在 21 份连续采集的盲法临床标本上评估了该检测方法的性能。这项研究表明,基于纳米颗粒和 T2MR 的检测方法快速且易于自动化,为临床医生提供了在样本采集数小时内检测和鉴定多种人类病原体的机会。