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用于甲型流感病毒检测的集成离心式逆转录酶环介导等温扩增微型装置

Integrated centrifugal reverse transcriptase loop-mediated isothermal amplification microdevice for influenza A virus detection.

作者信息

Jung Jae Hwan, Park Byung Hyun, Oh Seung Jun, Choi Goro, Seo Tae Seok

机构信息

Department of Chemical and Biomolecular Engineering (BK21 PLUS Program), Institute for the BioCentury, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon 305-701, Republic of Korea.

出版信息

Biosens Bioelectron. 2015 Jun 15;68:218-224. doi: 10.1016/j.bios.2014.12.043. Epub 2014 Dec 23.

Abstract

An integrated reverse transcriptase loop-mediated isothermal amplification (RT-LAMP) microdevice which consists of microbead-assisted RNA purification and RT-LAMP with real-time monitoring by a miniaturized optical detector was demonstrated. The integrated RT-LAMP microdevice includes four reservoirs for a viral RNA sample (purified influenza A viral RNA or lysates), a washing solution (70% ethanol), an elution solution (RNase-free water), and an RT-LAMP cocktail, and two chambers (a waste chamber and an RT-LAMP reaction chamber). The separate reservoirs for a washing solution, an elution solution, and an RT-LAMP cocktail were designed with capillary valves for stable storage. Three influenza A virus strains (A/H1N1, A/H3N2, and A/H5N1) were used for RNA templates, and RT-LAMP primer sets were designed to detect hemagglutinin (HA) and conserved M gene. Sequential sample flow to the microbeads for RNA purification was achieved by centrifugal force with optimization of capillary valves and a siphon channel. Furthermore, the purified RNA solution was successfully isolated from the waste solution by changing the rotational direction, and combined with the RT-LAMP cocktail in the RT-LAMP reaction chamber for target gene amplification. Total process from the sample injection to the result was completed in 47 min. Influenza A H1N1 virus was confirmed on the integrated RT-LAMP microdevice even with 10 copies of viral RNAs, which revealed 10-fold higher sensitivity than that of a conventional RT-PCR. Subtyping and specificity test of influenza A H1N1 viral lysates were also performed and clinical samples were successfully genotyped to confirm influenza A virus on our proposed integrated microdevice.

摘要

展示了一种集成的逆转录酶环介导等温扩增(RT-LAMP)微型装置,该装置由微珠辅助RNA纯化和通过小型光学检测器进行实时监测的RT-LAMP组成。集成的RT-LAMP微型装置包括四个用于病毒RNA样本(纯化的甲型流感病毒RNA或裂解物)、洗涤液(70%乙醇)、洗脱液(无RNase水)和RT-LAMP反应混合物的储液器,以及两个腔室(一个废液腔室和一个RT-LAMP反应腔室)。用于洗涤液、洗脱液和RT-LAMP反应混合物的独立储液器设计有毛细管阀以实现稳定储存。使用三种甲型流感病毒株(A/H1N1、A/H3N2和A/H5N1)作为RNA模板,并设计RT-LAMP引物组以检测血凝素(HA)和保守的M基因。通过优化毛细管阀和虹吸通道利用离心力实现样本向微珠的顺序流动以进行RNA纯化。此外,通过改变旋转方向成功地从废液中分离出纯化的RNA溶液,并将其与RT-LAMP反应腔室中的RT-LAMP反应混合物混合以进行靶基因扩增。从样本注入到结果的整个过程在47分钟内完成。即使在有10个病毒RNA拷贝的情况下,集成的RT-LAMP微型装置上也能确认甲型H1N1流感病毒,这表明其灵敏度比传统RT-PCR高10倍。还对甲型H1N1病毒裂解物进行了亚型和特异性测试,并且在我们提出的集成微型装置上成功地对临床样本进行了基因分型以确认甲型流感病毒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0887/7111304/9b4957c3a6d8/gr1_lrg.jpg

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