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基于箔片的侧向流动芯片上新冠病毒血清学检测的翻译:从注塑成型到可扩展卷对卷纳米压印光刻的历程

Translation of COVID-19 Serology Test on Foil-Based Lateral Flow Chips: A Journey from Injection Molding to Scalable Roll-to-Roll Nanoimprint Lithography.

作者信息

Khumwan Pakapreud, Ruttloff Stephan, Götz Johannes, Nees Dieter, O'Sullivan Conor, Conde Alvaro, Lohse Mirko, Wolf Christian, Okulova Nastasia, Brommert Janine, Benauer Richard, Katzmayr Ingo, Ladenhauf Nikolaus, Weigel Wilfried, Skolimowski Maciej, Sonnleitner Max, Smolka Martin, Haase Anja, Stadlober Barbara, Hesse Jan

机构信息

JOANNEUM RESEARCH Materials, Institute for Sensors, Photonics and Manufacturing Technologies, Franz-Pichler-Strasse 30, 8160 Weiz, Austria.

Inmold A/S, Teglbuen 10, 2990 Nivå, Denmark.

出版信息

Biosensors (Basel). 2025 Apr 4;15(4):229. doi: 10.3390/bios15040229.

Abstract

Lateral flow tests (LFTs) had a pivotal role in combating the spread of the SARS-CoV-2 virus throughout the COVID-19 pandemic thanks to their affordability and ease of use. Most of LFT devices were based on nitrocellulose membrane strips whose industrial upscaling to billions of devices has already been extensively demonstrated. Nevertheless, the assay option in an LFT format is largely restricted to qualitative detection of the target antigens. In this research, we surveyed the potential of UV nanoimprint lithography (UV-NIL) and extrusion coating (EC) for the high-throughput production of disposable capillary-driven, foil-based tests that allow multistep assays to be implemented for quantitative readout to address the inherent lack of on-demand fluid control and sensitivity of paper-based devices. Both manufacturing technologies operate on the principle of imprinting that enables high-volume, continuous structuring of microfluidic patterns in a roll-to-roll (R2R) production scheme. To demonstrate the feasibility of R2R-fabricated foil chips in a point-of-care biosensing application, we adapted a commercial chemiluminescence multiplex test for COVID-19 antibody detection originally developed for a capillary-driven microfluidic chip manufactured with injection molding (IM). In an effort to build a complete ecosystem for the R2R manufacturing of foil chips, we also recruited additional processes to streamline chip production: R2R biofunctionalization and R2R lamination. Compared to conventional fabrication techniques for microfluidic devices, the R2R techniques highlighted in this work offer unparalleled advantages concerning improved scalability, dexterity of seamless handling, and significant cost reduction. Our preliminary evaluation indicated that the foil chips exhibited comparable performance characteristics to the original IM-fabricated devices. This early success in assay translation highlights the promise of implementing biochemical assays on R2R-manufactured foil chips. Most importantly, it underscores the potential utilization of UV-NIL and EC as an alternative to conventional technologies for the future development in vitro diagnostics (IVD) in response to emerging point-of-care testing demands.

摘要

在抗击严重急性呼吸综合征冠状病毒2(SARS-CoV-2)病毒在新冠疫情期间的传播过程中,侧向流动检测(LFTs)因其价格低廉且使用方便而发挥了关键作用。大多数LFT设备基于硝酸纤维素膜条,其工业规模扩大到数十亿件已得到广泛证明。然而,LFT形式的检测选项在很大程度上仅限于对目标抗原的定性检测。在本研究中,我们研究了紫外纳米压印光刻(UV-NIL)和挤出涂布(EC)用于高通量生产一次性毛细管驱动的箔基检测的潜力,这种检测允许实施多步检测以进行定量读数,从而解决纸质设备固有的按需流体控制和灵敏度不足的问题。这两种制造技术都基于压印原理,能够在卷对卷(R2R)生产方案中对微流体图案进行大批量、连续结构化。为了证明R2R制造的箔芯片在即时护理生物传感应用中的可行性,我们改编了一种用于新冠病毒抗体检测的商业化学发光多重检测方法,该方法最初是为通过注塑成型(IM)制造的毛细管驱动微流体芯片开发的。为了构建一个完整的箔芯片R2R制造生态系统,我们还引入了其他工艺来简化芯片生产:R2R生物功能化和R2R层压。与微流体设备的传统制造技术相比,本工作中突出的R2R技术在提高可扩展性、无缝处理的灵活性和显著降低成本方面具有无与伦比的优势。我们的初步评估表明,箔芯片表现出与原始IM制造设备相当的性能特征。这种在检测转换方面的早期成功凸显了在R2R制造的箔芯片上实施生化检测的前景。最重要的是,它强调了UV-NIL和EC作为传统技术的替代方案在体外诊断(IVD)未来发展中响应新兴即时护理检测需求的潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/260f/12024825/cd30f12e72bb/biosensors-15-00229-g001.jpg

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