Department of Mechanical Engineering and Applied Mechanics , University of Pennsylvania , Philadelphia , Pennsylvania 19104 , United States.
Department of Microbiology, Perelman School of Medicine , University of Pennsylvania , Philadelphia , Pennsylvania 19104 , United States.
Anal Chem. 2018 Apr 3;90(7):4823-4831. doi: 10.1021/acs.analchem.8b00283. Epub 2018 Mar 22.
Rapid and quantitative molecular diagnostics in the field, at home, and at remote clinics is essential for evidence-based disease management, control, and prevention. Conventional molecular diagnostics requires extensive sample preparation, relatively sophisticated instruments, and trained personnel, restricting its use to centralized laboratories. To overcome these limitations, we designed a simple, inexpensive, hand-held, smartphone-based mobile detection platform, dubbed "smart-connected cup" (SCC), for rapid, connected, and quantitative molecular diagnostics. Our platform combines bioluminescent assay in real-time and loop-mediated isothermal amplification (BART-LAMP) technology with smartphone-based detection, eliminating the need for an excitation source and optical filters that are essential in fluorescent-based detection. The incubation heating for the isothermal amplification is provided, electricity-free, with an exothermic chemical reaction, and incubation temperature is regulated with a phase change material. A custom Android App was developed for bioluminescent signal monitoring and analysis, target quantification, data sharing, and spatiotemporal mapping of disease. SCC's utility is demonstrated by quantitative detection of Zika virus (ZIKV) in urine and saliva and HIV in blood within 45 min. We demonstrate SCC's connectivity for disease spatiotemporal mapping with a custom-designed website. Such a smart- and connected-diagnostic system does not require any lab facilities and is suitable for use at home, in the field, in the clinic, and particularly in resource-limited settings in the context of Internet of Medical Things (IoMT).
现场、家庭和偏远诊所的快速定量分子诊断对于基于证据的疾病管理、控制和预防至关重要。传统的分子诊断需要广泛的样品制备、相对复杂的仪器和经过培训的人员,这限制了其在集中式实验室的使用。为了克服这些限制,我们设计了一种简单、廉价、手持、基于智能手机的移动检测平台,称为“智能连接杯”(SCC),用于快速、连接和定量分子诊断。我们的平台将实时生物发光检测和环介导等温扩增(BART-LAMP)技术与基于智能手机的检测相结合,无需荧光检测所必需的激发源和光学滤波器。等温扩增的孵育加热是通过放热化学反应提供的,无需电力,并且通过相变材料来调节孵育温度。开发了一个自定义的 Android 应用程序,用于生物发光信号监测和分析、目标定量、数据共享以及疾病的时空映射。SCC 的实用性通过在 45 分钟内定量检测尿液和唾液中的寨卡病毒(ZIKV)和血液中的 HIV 得到了证明。我们通过一个定制设计的网站展示了 SCC 用于疾病时空映射的连接性。这种智能和连接的诊断系统不需要任何实验室设施,适用于家庭、现场、诊所,特别是在物联网(IoMT)背景下资源有限的环境中。