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用于从人血清中对寨卡病毒、登革热病毒和基孔肯雅病毒进行一体化分子诊断的纸基实验室(LAMDA)

Lab-on-paper for all-in-one molecular diagnostics (LAMDA) of zika, dengue, and chikungunya virus from human serum.

作者信息

Seok Youngung, Batule Bhagwan S, Kim Min-Gon

机构信息

Department of Mechanical Engineering and Applied Mechanics, School of Engineering and Applied Science, University of Pennsylvania, 233 Towne Building, 220 S. 33rd Street, Philadelphia, PA, 19104, USA.

Department of Chemistry, School of Physics and Chemistry, Gwangju Institute of Science and Technology (GIST), 123 Cheomdan-gwagiro, Gwangju, 500-712, Republic of Korea; Boditech Med Inc., 43, Geodudanji 1-gil, Dongnae-myeon, Chuncheon-si, Gangwon-do, 24398, Republic of Korea.

出版信息

Biosens Bioelectron. 2020 Oct 1;165:112400. doi: 10.1016/j.bios.2020.112400. Epub 2020 Jun 20.

Abstract

Several tropical fever viruses transmitted by mosquitoes including zika, dengue, and chikungunya, are becoming a serious problem in global public health. Simple diagnostic tools in early stages are strongly required to monitor and prevent these diseases. Paper diagnostic platforms can provide a solution for these needs, with integration of fluidic control techniques and isothermal amplification methods. Here, we demonstrate a Lab-on-paper for all-in-one molecular diagnostics of zika, dengue, and chikungunya virus from human serum. The entire process of nucleic acid testing that involves sampling, extraction, amplification, and detection is simply operated on a single paper chip. Based on the engineered structure of paper materials and dried chemicals on the all-in-one chip, serum samples containing the target virus RNA were simply added by automatic flow from distilled water injection. Target RNA molecules were concentrated on the binding pad with chitosan and then transported to reaction pads following a pH increase for specific reverse transcription loop-mediated isothermal amplification with fluorescence signal generation. Three targets, zika virus, dengue virus, and chikungunya virus, in human serum were simultaneously detected on the all-in-one paper chip within 60 min at 65 °C. The all-in-one paper chip can be used as a real-time quantitative assay for 5-5000 copies of zika virus RNA. This all-in-one device was successfully used with 5 clinical specimens of zika and dengue virus from real patients. We believe that the proposed all-in-one paper chip can provide a portable, low-cost, user-friendly, sensitive, and specific NAT platform with great potential in point-of-care diagnostics.

摘要

包括寨卡病毒、登革热病毒和基孔肯雅病毒在内的几种由蚊子传播的热带发热病毒,正成为全球公共卫生领域的一个严重问题。迫切需要早期阶段的简易诊断工具来监测和预防这些疾病。纸质诊断平台通过集成流体控制技术和等温扩增方法,可以满足这些需求。在此,我们展示了一种用于从人血清中对寨卡病毒、登革热病毒和基孔肯雅病毒进行一体化分子诊断的纸基实验室。核酸检测的整个过程,包括采样、提取、扩增和检测,都可以在单个纸芯片上简单操作。基于一体化芯片上纸质材料和干燥化学物质的工程结构,通过从蒸馏水注入实现的自动流动,简单地添加含有目标病毒RNA的血清样本。目标RNA分子与壳聚糖一起浓缩在结合垫上,然后在pH值升高后转运到反应垫上,进行特定的逆转录环介导等温扩增并产生荧光信号。在65°C下,在60分钟内即可在一体化纸芯片上同时检测人血清中的寨卡病毒、登革热病毒和基孔肯雅病毒这三种目标物。该一体化纸芯片可用作寨卡病毒RNA 5 - 50,000拷贝的实时定量检测。该一体化设备已成功应用于来自真实患者的5份寨卡病毒和登革热病毒临床样本。我们相信,所提出的一体化纸芯片能够提供一个便携、低成本、用户友好、灵敏且特异的核酸检测平台,在即时诊断方面具有巨大潜力。

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