Sibley School of Mechanical and Aerospace Engineering, Cornell University , Ithaca, New York 14853, United States.
Institute for Nutritional Sciences, Global Health, and Technology (INSiGHT), Cornell University , Ithaca, New York 14853, United States.
Anal Chem. 2016 Sep 6;88(17):8359-63. doi: 10.1021/acs.analchem.6b01828. Epub 2016 Aug 8.
Acute undifferentiated febrile illnesses (AFIs) represent a significant health burden worldwide. AFIs can be caused by infection with a number of different pathogens including dengue (DENV) and Chikungunya viruses (CHIKV), and their differential diagnosis is critical to the proper patient management. While rapid diagnostic tests (RDTs) for the detection of IgG/IgM against a single pathogen have played a significant role in enabling the rapid diagnosis in the point-of-care settings, the state-of-the-art assay scheme is incompatible with the multiplex detection of IgG/IgM to more than one pathogen. In this paper, we present a novel assay scheme that uses two-color latex labels for rapid multiplex detection of IgG/IgM. Adapting this assay scheme, we show that 4-plex detection of the IgG/IgM antibodies to DENV and CHIKV is possible in 10 min by using it to correctly identify 12 different diagnostic scenarios. We also show that blue, mixed, and red colorimetric signals corresponding to IgG, IgG/IgM, and IgM positive cases, respectively, can be associated with distinct ranges of hue intensities, which could be exploited by analyzer systems in the future for making accurate, automated diagnosis. This represents the first steps toward the development of a single RDT-based system for the differential diagnosis of numerous AFIs of interest.
急性非特异性发热性疾病(AFIs)在全球范围内构成了重大的健康负担。AFIs 可能由多种不同病原体引起,包括登革热(DENV)和基孔肯雅热病毒(CHIKV),对其进行鉴别诊断对于正确的患者管理至关重要。虽然针对单一病原体的 IgG/IgM 检测的快速诊断检测(RDT)在即时护理环境中的快速诊断中发挥了重要作用,但最先进的检测方案与针对多种病原体的 IgG/IgM 的多重检测不兼容。在本文中,我们提出了一种使用双色乳胶标签进行快速多重 IgG/IgM 检测的新型检测方案。通过采用这种检测方案,我们展示了在 10 分钟内可以通过 4 重检测 DENV 和 CHIKV 的 IgG/IgM 抗体来正确识别 12 种不同的诊断情况。我们还表明,与 IgG、IgG/IgM 和 IgM 阳性病例相对应的蓝色、混合和红色比色信号可以与独特的色调强度范围相关联,这在未来可以被分析系统用于进行准确、自动的诊断。这代表了开发用于多种感兴趣的 AFI 鉴别诊断的基于单个 RDT 的系统的第一步。