Control and automation of multilayered integrated microfluidic device fabrication

被引:19
作者
Kipper, Sarit [1 ]
Frolov, Ludmila [1 ]
Guy, Ortal [1 ]
Pellach, Michal [1 ]
Glick, Yair [1 ]
Malichi, Asaf [1 ]
Knisbacher, Binyamin A. [1 ]
Barbiro-, Efrat [1 ]
Avrahami, Michaely Dorit [1 ]
Yavets-Chen, Yehuda [1 ]
Levanon, Erez Y. [1 ]
Gerber, Doron [1 ]
机构
[1] Bar Ilan Univ, Bar Ilan Inst Nanotechnol & Adv Mat, Mina & Everard Goodman Fac Life Sci, Ramat Gan, Israel
基金
欧盟地平线“2020”;
关键词
LARGE-SCALE INTEGRATION; FACTOR-BINDING-SITES; SYSTEMS; ALIGNMENT; PDMS;
D O I
10.1039/c6lc01534d
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Integrated microfluidics is a sophisticated three-dimensional (multi layer) solution for high complexity serial or parallel processes. Fabrication of integrated microfluidic devices requires soft lithography and the stacking of thin-patterned PDMS layers. Precise layer alignment and bonding is crucial. There are no previously reported standards for alignment of the layers, which is mostly performed using uncontrolled processes with very low alignment success. As a result, integrated microfluidics is mostly used in academia rather than in the many potential industrial applications. We have designed and manufactured a semiautomatic Microfluidic Device Assembly System (mu DAS) for full device production. mu DAS comprises an electrooptic mechanical system consisting of four main parts: optical system, smart media holder (for PDMS), a micropositioning xyz. system and a macropositioning XY mechanism. The use of the mu DAS yielded valuable information regarding PDMS as the material for device fabrication, revealed previously unidentified errors, and enabled optimization of a robust fabrication process. In addition, we have demonstrated the utilization of the mu DAS technology for fabrication of a complex 3 layered device with over 12000 micromechanical valves and an array of 64 x 64 DNA spots on a glass substrate with high yield and high accuracy. We increased fabrication yield from 25% to about 85% with an average layer alignment error of just similar to 4 mu m. It also increased our protein expression yields from 80% to over 90%, allowing us to investigate more proteins per experiment. The mu DAS has great potential to become a valuable tool for both advancing integrated microfluidics in academia and producing and applying microfluidic devices in the industry.
引用
收藏
页码:557 / 566
页数:10
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