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利用柔性印刷电路板技术实现高精度、低成本的微流控芯片制造。

Achieving High-Precision, Low-Cost Microfluidic Chip Fabrication with Flexible PCB Technology.

作者信息

Vanhooydonck Andres, Caers Thalissa, Parrilla Marc, Delputte Peter, Watts Regan

机构信息

Faculty of Design Sciences, Department of Product Development, University of Antwerp, Paardenmarkt 94, 2000 Antwerp, Belgium.

Laboratory for Microbiology, Parasitology and Hygiene (LMPH), Faculty of Pharmaceutical, Biomedical and Veterinary Sciences, University of Antwerp, 2610 Antwerp, Belgium.

出版信息

Micromachines (Basel). 2024 Mar 22;15(4):425. doi: 10.3390/mi15040425.

Abstract

Soft lithography has long remained the state of the art to generate the necessary micropatterning for molded microfluidic (MF) chips. Previous attempts to use printed circuit boards (PCBs) as a cheap and accessible alternative to expensive lithographed molds for the production of PDMS MF chip prototypes have shown their limitations. A more in-depth exploration of using PCBs as a mold substrate and a novel methodology of using flexible PCBs to produce highly accurate MF chips is reported here for the first time. Cross sections highlight the improved accuracy of this method, and peel testing is performed to demonstrate suitable adhesion between the glass substrate and PDMS cast. Positive cell growth viability showcases this novel method as a high-accuracy, high-accessibility, low-cost prototyping method for microfluidic chips while still maintaining all favorable properties provided by the PDMS material.

摘要

长期以来,软光刻一直是为模制微流控(MF)芯片生成必要微图案的先进技术。此前曾尝试使用印刷电路板(PCB)作为昂贵光刻模具的廉价且易于获取的替代品来生产PDMS MF芯片原型,但已显示出其局限性。本文首次报道了对将PCB用作模具基板的更深入探索以及使用柔性PCB生产高精度MF芯片的新方法。横截面突出了该方法提高的精度,并进行了剥离测试以证明玻璃基板与PDMS铸件之间具有合适的附着力。细胞生长活力呈阳性,表明这种新方法是一种用于微流控芯片的高精度、高可达性、低成本的原型制作方法,同时仍保持PDMS材料提供的所有良好特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4833/11051900/02819d5a8abb/micromachines-15-00425-g001.jpg

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