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一种完全集成的手动离心微流控平台,用于超简单和非仪器化的核酸检测。

A fully integrated hand-powered centrifugal microfluidic platform for ultra-simple and non-instrumental nucleic acid detection.

机构信息

Qingdao Nucleic Acid Rapid Testing International Science and Technology Cooperation Base, College of Life Sciences, Department of Pathogenic Biology, School of Basic Medicine, Qingdao University, Qingdao, 266071, PR China.

Single-Cell Center, CAS Key Laboratory of Biofuels and Shandong Key Laboratory of Energy Genetics, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao, Shandong, 266101, PR China.

出版信息

Talanta. 2020 Nov 1;219:121221. doi: 10.1016/j.talanta.2020.121221. Epub 2020 Jun 14.

Abstract

Hand-powered centrifugal microfluidics combined with isothermal nucleic acid amplification testing (NAAT) have been one of the most promising rapid detection platforms in resource-limited settings. However, current hand-powered centrifuges still suffer from customized instrument-based operation and low rotation rate; and most isothermal NAAT were conducted with complicated reaction systems for DNA detection and required an additional step for RNA detection. Herein, we built a fully hand-powered centrifugal miniaturized NAAT platform inspired by buzzer toys, which embedded sample preparation, strand exchange amplification (SEA) and visual fluorescence detection together. The centrifugal disc was easily fabricated, and operated the mixing in 1 min by simply dragging the looped rope through it with a mean input force of 16.5 N, enabling its rotation rate reach 5000 rpm. In addition, SEA was an ultra-simple one-step DNA or RNA detection method initiated by Bst DNA polymerase and a pair of primers, and thus we took all its merits and integrate it into microfluidic systems firstly. Furthermore, taking Vibrio parahemolyticus as an example, the microfluidic platform achieved DNA or RNA detection within 1 h; and the detection limit of the microchip for artificially spiked oysters was 10 CFU/g without cumbersome sample preparation, and reached to 10 CFU/g after enrichment. Therefore, we provided an ultra-simple and non-instrumental microfluidic platform powered merely by hands, performing general potential in sample-to-answer NAAT for versatile pathogens in remote regions.

摘要

手动离心微流控技术与等温核酸扩增检测(NAAT)相结合,已成为资源有限环境中最有前途的快速检测平台之一。然而,目前的手动离心机仍然存在基于仪器的定制操作和低转速的问题;大多数等温 NAAT 都采用复杂的反应体系进行 DNA 检测,并且需要额外的步骤进行 RNA 检测。在此,我们受蜂鸣器玩具的启发,构建了一个完全手动离心的微型 NAAT 平台,该平台将样品制备、链交换扩增(SEA)和可视化荧光检测集成在一起。离心盘易于制造,通过简单地用循环绳拉动它,在 1 分钟内即可完成混合,平均输入力为 16.5 N,使其转速达到 5000 rpm。此外,SEA 是一种超简单的一步式 DNA 或 RNA 检测方法,由 Bst DNA 聚合酶和一对引物引发,因此我们首先采用了所有的优点并将其集成到微流控系统中。此外,以副溶血性弧菌为例,该微流控平台在 1 小时内实现了 DNA 或 RNA 的检测;微芯片对人工添加牡蛎的检测限为 10 CFU/g,无需繁琐的样品制备,富集后可达到 10 CFU/g。因此,我们提供了一个超简单且无需仪器的手动微流控平台,仅通过手动即可实现一般的潜在样本到答案的 NAAT,适用于偏远地区的各种病原体。

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