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SUN, A.; VOPAŘILOVÁ, P.; LIU, X.; KOU, B.; ŘEZNÍČEK, T.; LEDNICKÝ, T.; NI, S.; KUDR, J.; ZÍTKA, O.; FOHLEROVÁ, Z.; PAJER, P.; ZHANG, H.; NEUŽIL, P.
Original Title
An integrated microfluidic platform for nucleic acid testing
English Title
Type
WoS Article
Original Abstract
This study presents a rapid and versatile low-cost sample-to-answer system for SARS-CoV-2 diagnostics. The system integrates the extraction and purification of nucleic acids, followed by amplification via either reverse transcription-quantitative polymerase chain reaction (RT–qPCR) or reverse transcription loop-mediated isothermal amplification (RT–LAMP). By meeting diverse diagnostic and reagent needs, the platform yields testing results that closely align with those of commercial RT-LAMP and RT‒qPCR systems. Notable advantages of our system include its speed and cost-effectiveness. The assay is completed within 28 min, including sample loading (5 min), ribonucleic acid (RNA) extraction (3 min), and RT-LAMP (20 min). The cost of each assay is ≈ $9.5, and this pricing is competitive against that of Food and Drug Administration (FDA)-approved commercial alternatives. Although some RNA loss during on-chip extraction is observed, the platform maintains a potential limit of detection lower than 297 copies. Portability makes the system particularly useful in environments where centralized laboratories are either unavailable or inconveniently located. Another key feature is the platform’s versatility, allowing users to choose between RT‒qPCR or RT‒LAMP tests based on specific requirements.
English abstract
Keywords
microfluidics;nucleic acids;RT-PCR;SARS-CoV-2
Key words in English
Authors
RIV year
2025
Released
23.05.2024
Publisher
Nature
ISBN
2055-7434
Periodical
Microsystems & Nanoengineering
Volume
10
Number
1
State
People's Republic of China
Pages from
Pages to
14
Pages count
URL
https://www.nature.com/articles/s41378-024-00677-6
Full text in the Digital Library
http://hdl.handle.net/11012/249356
BibTex
@article{BUT188684, author="Antao {Sun} and Petra {Vopařilová} and Xiaocheng {Liu} and Bingqian {Kou} and Tomáš {Řezníček} and Tomáš {Lednický} and Sheng {Ni} and Jiří {Kudr} and Ondřej {Zítka} and Zdenka {Fohlerová} and Petr {Pajer} and Haoqing {Zhang} and Pavel {Neužil}", title="An integrated microfluidic platform for nucleic acid testing", journal="Microsystems & Nanoengineering", year="2024", volume="10", number="1", pages="1--14", doi="10.1038/s41378-024-00677-6", issn="2055-7434", url="https://www.nature.com/articles/s41378-024-00677-6" }
Documents
s41378-024-00677-6