Cargando…

A microfluidic system for rapid nucleic acid analysis based on real-time convective PCR at point-of-care testing

A microfluidic system for rapid nucleic acid analysis based on real-time convective PCR is developed. To perform ‘sample-in, answer-out’ nucleic acid analysis, a microfluidic chip is developed to efficiently extract nucleic acid, and meanwhile convective PCR (CPCR) is applied for rapid nucleic acid...

Descripción completa

Detalles Bibliográficos
Autores principales: Xu, Donglin, Jiang, Xiaodan, Zou, Tianli, Miao, Guijun, Fu, Qiang, Xiang, Fei, Feng, Liang, Ye, Xiangzhong, Zhang, Lulu, Qiu, Xianbo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9380682/
https://www.ncbi.nlm.nih.gov/pubmed/35991118
http://dx.doi.org/10.1007/s10404-022-02577-5
_version_ 1784768926145576960
author Xu, Donglin
Jiang, Xiaodan
Zou, Tianli
Miao, Guijun
Fu, Qiang
Xiang, Fei
Feng, Liang
Ye, Xiangzhong
Zhang, Lulu
Qiu, Xianbo
author_facet Xu, Donglin
Jiang, Xiaodan
Zou, Tianli
Miao, Guijun
Fu, Qiang
Xiang, Fei
Feng, Liang
Ye, Xiangzhong
Zhang, Lulu
Qiu, Xianbo
author_sort Xu, Donglin
collection PubMed
description A microfluidic system for rapid nucleic acid analysis based on real-time convective PCR is developed. To perform ‘sample-in, answer-out’ nucleic acid analysis, a microfluidic chip is developed to efficiently extract nucleic acid, and meanwhile convective PCR (CPCR) is applied for rapid nucleic acid amplification. With an integrated microfluidic chip consisting of reagent pre-storage chambers, a lysis & wash chamber, an elution chamber and a waste chamber, nucleic acid extraction based on magnetic beads can be automatically performed for a large size of test sample within a limited time. Based on an easy-to-operate strategy, different pre-stored reagents can be conveniently released for consecutive reaction at different steps. To achieve efficient mixing, a portable companion device is developed to introduce properly controlled 3-D actuation to magnetic beads in nucleic acid extraction. In CPCR amplification, PCR reagent can be spontaneously and repeatedly circulated between hot and cool zones of the reactor for space-domain thermal cycling based on pseudo-isothermal heating. A handheld real-time CPCR device is developed to perform nucleic acid amplification and in-situ detection. To extend the detection throughput, multiple handheld real-time CPCR devices can be grouped together by a common control system. It is demonstrated that influenza A (H1N1) viruses with the reasonable concentration down to 1.0 TCID(50)/ml can be successfully detected with the microfluidic system.
format Online
Article
Text
id pubmed-9380682
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Springer Berlin Heidelberg
record_format MEDLINE/PubMed
spelling pubmed-93806822022-08-17 A microfluidic system for rapid nucleic acid analysis based on real-time convective PCR at point-of-care testing Xu, Donglin Jiang, Xiaodan Zou, Tianli Miao, Guijun Fu, Qiang Xiang, Fei Feng, Liang Ye, Xiangzhong Zhang, Lulu Qiu, Xianbo Microfluid Nanofluidics Research Paper A microfluidic system for rapid nucleic acid analysis based on real-time convective PCR is developed. To perform ‘sample-in, answer-out’ nucleic acid analysis, a microfluidic chip is developed to efficiently extract nucleic acid, and meanwhile convective PCR (CPCR) is applied for rapid nucleic acid amplification. With an integrated microfluidic chip consisting of reagent pre-storage chambers, a lysis & wash chamber, an elution chamber and a waste chamber, nucleic acid extraction based on magnetic beads can be automatically performed for a large size of test sample within a limited time. Based on an easy-to-operate strategy, different pre-stored reagents can be conveniently released for consecutive reaction at different steps. To achieve efficient mixing, a portable companion device is developed to introduce properly controlled 3-D actuation to magnetic beads in nucleic acid extraction. In CPCR amplification, PCR reagent can be spontaneously and repeatedly circulated between hot and cool zones of the reactor for space-domain thermal cycling based on pseudo-isothermal heating. A handheld real-time CPCR device is developed to perform nucleic acid amplification and in-situ detection. To extend the detection throughput, multiple handheld real-time CPCR devices can be grouped together by a common control system. It is demonstrated that influenza A (H1N1) viruses with the reasonable concentration down to 1.0 TCID(50)/ml can be successfully detected with the microfluidic system. Springer Berlin Heidelberg 2022-08-16 2022 /pmc/articles/PMC9380682/ /pubmed/35991118 http://dx.doi.org/10.1007/s10404-022-02577-5 Text en © The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature 2022, Springer Nature or its licensor holds exclusive rights to this article under a publishing agreement with the author(s) or other rightsholder(s); author self-archiving of the accepted manuscript version of this article is solely governed by the terms of such publishing agreement and applicable law. This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Research Paper
Xu, Donglin
Jiang, Xiaodan
Zou, Tianli
Miao, Guijun
Fu, Qiang
Xiang, Fei
Feng, Liang
Ye, Xiangzhong
Zhang, Lulu
Qiu, Xianbo
A microfluidic system for rapid nucleic acid analysis based on real-time convective PCR at point-of-care testing
title A microfluidic system for rapid nucleic acid analysis based on real-time convective PCR at point-of-care testing
title_full A microfluidic system for rapid nucleic acid analysis based on real-time convective PCR at point-of-care testing
title_fullStr A microfluidic system for rapid nucleic acid analysis based on real-time convective PCR at point-of-care testing
title_full_unstemmed A microfluidic system for rapid nucleic acid analysis based on real-time convective PCR at point-of-care testing
title_short A microfluidic system for rapid nucleic acid analysis based on real-time convective PCR at point-of-care testing
title_sort microfluidic system for rapid nucleic acid analysis based on real-time convective pcr at point-of-care testing
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9380682/
https://www.ncbi.nlm.nih.gov/pubmed/35991118
http://dx.doi.org/10.1007/s10404-022-02577-5
work_keys_str_mv AT xudonglin amicrofluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT jiangxiaodan amicrofluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT zoutianli amicrofluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT miaoguijun amicrofluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT fuqiang amicrofluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT xiangfei amicrofluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT fengliang amicrofluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT yexiangzhong amicrofluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT zhanglulu amicrofluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT qiuxianbo amicrofluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT xudonglin microfluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT jiangxiaodan microfluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT zoutianli microfluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT miaoguijun microfluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT fuqiang microfluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT xiangfei microfluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT fengliang microfluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT yexiangzhong microfluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT zhanglulu microfluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting
AT qiuxianbo microfluidicsystemforrapidnucleicacidanalysisbasedonrealtimeconvectivepcratpointofcaretesting