开发用于自动识别呼吸道病毒的独立微流控芯片和基于物联网的护理点设备

IF 5.4 2区 工程技术 Q1 BIOCHEMICAL RESEARCH METHODS
Lab on a Chip Pub Date : 2024-03-28 DOI:10.1039/D3LC00933E
Huynh Quoc Nguyen, Van Dan Nguyen, Vu Minh Phan and Tae Seok Seo
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引用次数: 0

摘要

COVID-19 大流行对体外诊断市场产生了巨大影响,从而推动了护理点检测 (POCT)、多重检测和数字健康平台等新技术的发展。在本研究中,我们展示了一种与基于物联网(IoT)的床旁检测(POC)设备集成的独立微流控芯片,用于快速灵敏地诊断呼吸道病毒。我们的平台通过自动进行 RNA 提取、反转录环介导等温扩增(RT-LAMP)和荧光检测,可在 70 分钟内完成从样本到答案的诊断。微流控芯片可存储整个诊断分析所需的所有试剂,包括裂解缓冲液、洗涤缓冲液、洗脱缓冲液和冻干 RT-LAMP 鸡尾酒。它可以在多个反应室中进行核酸提取、等分和基因扩增,不会造成交叉污染。基于物联网的 POC 设备由一个用于设备控制和数据处理的 Raspberry Pi 4、一个用于测量荧光信号的 CMOS 传感器、一个用于温度控制的电阻加热器面板和一个用于控制片上试剂溶液移动的电磁阀组成。拟议的设备便于携带,配有一个触摸屏,用于用户控制和结果显示。我们使用 11 份临床呼吸道病毒样本对该平台的性能进行了评估,其中包括 5 份 SARS-CoV-2 样本、2 份甲型流感样本和 4 份乙型流感样本。所有测试的临床样本都能准确鉴定,特异性和保真度都很高,证明了同时检测多种呼吸道病毒的能力。集成微流控芯片与 POC 设备的结合为在资源有限的环境中进行呼吸道病毒的快速分子诊断提供了一种简单、经济、可扩展的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Development of a self-contained microfluidic chip and an internet-of-things-based point-of-care device for automated identification of respiratory viruses†

Development of a self-contained microfluidic chip and an internet-of-things-based point-of-care device for automated identification of respiratory viruses†

The COVID-19 pandemic greatly impacted the in vitro diagnostic market, leading to the development of new technologies such as point-of-care testing (POCT), multiplex testing, and digital health platforms. In this study, we present a self-contained microfluidic chip integrated with an internet-of-things (IoT)-based point-of-care (POC) device for rapid and sensitive diagnosis of respiratory viruses. Our platform enables sample-to-answer diagnostics within 70 min by automating RNA extraction, reverse transcription-loop-mediated isothermal amplification (RT-LAMP), and fluorescence detection. The microfluidic chip is designed to store all the necessary reagents for the entire diagnostic assay, including a lysis buffer, a washing buffer, an elution buffer, and a lyophilized RT-LAMP cocktail. It can perform nucleic acid extraction, aliquoting, and gene amplification in multiple reaction chambers without cross-contamination. The IoT-based POC device consists of a Raspberry Pi 4 for device control and data processing, a CMOS sensor for measuring fluorescence signals, a resistive heater panel for temperature control, and solenoid valves for controlling the movement of on-chip reagent solutions. The proposed device is portable and features a touchscreen for user control and result display. We evaluated the performance of the platform using 11 clinical respiratory virus samples, including 5 SARS-CoV-2 samples, 2 influenza A samples, and 4 influenza B samples. All tested clinical samples were accurately identified with high specificity and fidelity, demonstrating the ability to simultaneously detect multiple respiratory viruses. The combination of the integrated microfluidic chip with the POC device offers a simple, cost-effective, and scalable solution for rapid molecular diagnosis of respiratory viruses in resource-limited settings.

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来源期刊
Lab on a Chip
Lab on a Chip 工程技术-化学综合
CiteScore
11.10
自引率
8.20%
发文量
434
审稿时长
2.6 months
期刊介绍: Lab on a Chip is the premiere journal that publishes cutting-edge research in the field of miniaturization. By their very nature, microfluidic/nanofluidic/miniaturized systems are at the intersection of disciplines, spanning fundamental research to high-end application, which is reflected by the broad readership of the journal. Lab on a Chip publishes two types of papers on original research: full-length research papers and communications. Papers should demonstrate innovations, which can come from technical advancements or applications addressing pressing needs in globally important areas. The journal also publishes Comments, Reviews, and Perspectives.
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