Qian Jingjing, Zhang Qinming, Lu Meng
Department of Electrical and Computer Engineering, Iowa State University, Ames, IA 50011, USA.
Department of Electrical and Computer Engineering, Iowa State University, Ames, IA 50011, USA; Department of Mechanical Engineering, Iowa State University, Ames, IA 50011, USA.
Biosens Bioelectron. 2023 Apr 15;226:115114. doi: 10.1016/j.bios.2023.115114. Epub 2023 Feb 1.
In recent years, paper-based nucleic acid sensors have been demonstrated for the ability to detect DNA and RNA molecules extracted from viruses and bacteria. In clinical samples, these nucleic acids are mostly encapsulated in lipid membranes and need to be released before being analyzed using paper-based sensors. For the nucleic acid amplification tests (NAATs), it is also desirable to remove the interfering molecules that can inhibit the nucleic acid amplification. To achieve a field deployable NAAT, we report a portable sensor system that combines the thermolysis and paper-based NAATs to detect target RNA molecules carried by viral and exosomal nanoparticles. The sensor cartridge includes a lysis chamber with a pressure-controlled diaphragm valve, paper flow channels, and three paper-based NAAT reaction chambers to extract, transport, and detect nucleic acids respectively. A compact instrument was prototyped to automate the assay, collect fluorescence images of the nucleic acid amplification, and generate amplification curves for NAATs. The pump-free and paper-based sensor achieved quantitative analysis of influenza A virus (IAV) RNA and exosome microRNA within 1 h, with the lowest detect concentration of 10 TCID/mL and 10 EV/mL for IAV and exosome, respectively. Owing to the advantages of easy storage, simple operation, and low cost, such as system has great potential to be used as a point-of-care test for in-field diagnosis of viral and bacterial infections.
近年来,纸质核酸传感器已被证明能够检测从病毒和细菌中提取的DNA和RNA分子。在临床样本中,这些核酸大多包裹在脂质膜中,在使用纸质传感器进行分析之前需要释放出来。对于核酸扩增试验(NAATs),还需要去除能够抑制核酸扩增的干扰分子。为了实现可现场部署的NAAT,我们报告了一种便携式传感器系统,该系统结合了热解和基于纸的NAAT来检测病毒和外泌体纳米颗粒携带的目标RNA分子。传感器盒包括一个带有压力控制隔膜阀的裂解室、纸流通道和三个基于纸的NAAT反应室,分别用于提取、运输和检测核酸。制作了一个紧凑型仪器原型,以实现检测自动化,收集核酸扩增的荧光图像,并生成NAAT的扩增曲线。这种无泵纸质传感器在1小时内实现了对甲型流感病毒(IAV)RNA和外泌体微小RNA的定量分析,IAV和外泌体的最低检测浓度分别为10 TCID/mL和10 EV/mL。由于具有易于储存、操作简单和成本低等优点,该系统具有很大的潜力用作现场诊断病毒和细菌感染的即时检测。