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卷对卷制造集成 PDMS-纸微流控芯片用于核酸扩增。

Roll-to-roll fabrication of integrated PDMS-paper microfluidics for nucleic acid amplification.

机构信息

VTT-Technical Research Centre of Finland, Kaitoväylä 1, FIN-90590 Oulu, Finland.

出版信息

Lab Chip. 2018 May 29;18(11):1552-1559. doi: 10.1039/c8lc00269j.

Abstract

Microfluidic-based integrated molecular diagnostic systems, which are automated, sensitive, specific, user-friendly, robust, rapid, easy-to-use, and portable, can revolutionize future medicine. Current research and development largely relies on polydimethylsiloxane (PDMS) to fabricate microfluidic devices. Since the transition from the proof-of-principle phase to clinical studies requires a vast number of integrated microfluidic devices, there is a need for a high-volume manufacturing method of silicone-based microfluidics. Here we present the first roll-to-roll (R2R) thermal imprinting method to fabricate integrated PDMS-paper microfluidics for molecular diagnostics, which allows production of tens of thousands of replicates in an hour. In order to validate the replicated molecular diagnostic platforms, on-chip amplification of viral ribonucleic acid (RNA) with loop-mediated isothermal amplification (LAMP) was demonstrated. These low-cost, rapid and accurate molecular diagnostic platforms will generate a wide range of applications in preventive personalized medicine, global healthcare, agriculture, food, environment, water monitoring, and global biosecurity.

摘要

基于微流控的集成分子诊断系统具有自动化、敏感、特异、用户友好、稳健、快速、易用和便携等特点,有望彻底改变未来的医学。目前的研究和开发主要依赖于聚二甲基硅氧烷(PDMS)来制造微流控器件。由于从原理验证阶段到临床研究的过渡需要大量集成的微流控器件,因此需要一种用于硅基微流控的大批量制造方法。在这里,我们首次提出了一种用于分子诊断的基于卷对卷(R2R)热压印的集成 PDMS-纸微流控制造方法,该方法可在一小时内生产数万份复制品。为了验证复制的分子诊断平台,我们展示了在芯片上用环介导等温扩增(LAMP)对病毒核糖核酸(RNA)进行的扩增。这些低成本、快速和准确的分子诊断平台将在预防性个性化医疗、全球医疗保健、农业、食品、环境、水监测和全球生物安全等领域产生广泛的应用。

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