Mani Vigneshwaran, Paleja Bhairav, Larbi Karima, Kumar Pavanish, Tay Jo Ann, Siew Jie Yee, Inci Fatih, Wang ShuQi, Chee Cynthia, Wang Yee Tang, Demirci Utkan, De Libero Gennaro, Singhal Amit
Singapore Immunology Network, Agency for Science, Technology and Research (A*STAR), Singapore.
Demirci Bio-Acoustic-MEMS in Medicine (BAMM) Laboratory, Stanford University School of Medicine, Department of Radiology, Canary Center at Stanford for Cancer Early Detection, Palo Alto, California, USA.
Sci Rep. 2016 Oct 24;6:35845. doi: 10.1038/srep35845.
Access to point-of-care (POC), rapid, inexpensive, sensitive, and instrument-free tests for the diagnosis of tuberculosis (TB) remains a major challenge. Here, we report a simple and low-cost microchip-based TB ELISA (MTBE) platform for the detection of anti-mycobacterial IgG in plasma samples in less than 15 minutes. The MTBE employs a flow-less, magnet-actuated, bead-based ELISA for simultaneous detection of IgG responses against multiple mycobacterial antigens. Anti-trehalose 6,6'-dimycolate (TDM) IgG responses were the strongest predictor for differentiating active tuberculosis (ATB) from healthy controls (HC) and latent tuberculosis infections (LTBI). The TDM-based MTBE demonstrated superior sensitivity compared to sputum microscopy (72% vs. 56%) with 80% and 63% positivity among smear-positive and smear-negative confirmed ATB samples, respectively. Receiver operating characteristic analysis indicated good accuracy for differentiating ATB from HC (AUC = 0.77). Thus, TDM-based MTBE can be potentially used as a screening device for rapid diagnosis of active TB at the POC.
获得用于结核病(TB)诊断的即时检验(POC)、快速、廉价、灵敏且无需仪器的检测方法仍然是一项重大挑战。在此,我们报告了一种基于微芯片的简单且低成本的结核病酶联免疫吸附测定(MTBE)平台,可在不到15分钟内检测血浆样本中的抗分枝杆菌IgG。MTBE采用无流动、磁驱动、基于微珠的酶联免疫吸附测定法,用于同时检测针对多种分枝杆菌抗原的IgG反应。抗海藻糖6,6'-二霉菌酸酯(TDM)IgG反应是区分活动性结核病(ATB)与健康对照(HC)和潜伏性结核感染(LTBI)的最强预测指标。基于TDM的MTBE与痰涂片显微镜检查相比,灵敏度更高(72%对56%),在涂片阳性和涂片阴性的确诊ATB样本中,阳性率分别为80%和63%。受试者工作特征分析表明,区分ATB与HC的准确性良好(曲线下面积=0.77)。因此,基于TDM的MTBE有潜力作为一种即时检验设备用于快速诊断活动性结核病。