3D-Printed Microfluidics

被引:623
作者
Au, Anthony K. [1 ]
Huynh, Wilson [1 ]
Horowitz, Lisa F. [1 ]
Folch, Albert [1 ]
机构
[1] Univ Washington, Dept Bioengn, 3720 15th Ave NE,Box 355061, Seattle, WA 98195 USA
关键词
3D printing; cytotoxicity; microfluidics; photochemistry; polymerization; ON-A-CHIP; MICRO-STEREOLITHOGRAPHY; DIGITAL LOGIC; DIRECT-WRITE; CELL; FABRICATION; DEVICES; GENERATION; HYDROGELS; MICROSTRUCTURES;
D O I
10.1002/anie.201504382
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The advent of soft lithography allowed for an unprecedented expansion in the field of microfluidics. However, the vast majority of PDMS microfluidic devices are still made with extensive manual labor, are tethered to bulky control systems, and have cumbersome user interfaces, which all render commercialization difficult. On the other hand, 3D printing has begun to embrace the range of sizes and materials that appeal to the developers of microfluidic devices. Prior to fabrication, a design is digitally built as a detailed 3D CAD file. The design can be assembled in modules by remotely collaborating teams, and its mechanical and fluidic behavior can be simulated using finite-element modeling. As structures are created by adding materials without the need for etching or dissolution, processing is environmentally friendly and economically efficient. We predict that in the next few years, 3D printing will replace most PDMS and plastic molding techniques in academia.
引用
收藏
页码:3862 / 3881
页数:20
相关论文
共 157 条
[51]   Lamination of metal sheets [J].
Himmer, T ;
Nakagawa, T ;
Anzai, M .
COMPUTERS IN INDUSTRY, 1999, 39 (01) :27-33
[52]   3D printed microfluidics for biological applications [J].
Ho, Chee Meng Benjamin ;
Sum Huan Ng ;
Li, King Ho Holden ;
Yoon, Yong-Jin .
LAB ON A CHIP, 2015, 15 (18) :3627-3637
[53]   Molecular biology on a microfluidic chip [J].
Hong, Jong Wook ;
Chen, Yan ;
Anderson, W. French ;
Quake, Stephen R. .
JOURNAL OF PHYSICS-CONDENSED MATTER, 2006, 18 (18) :S691-S701
[54]   A pneumatically-actuated three-way microvalve fabricated with polydimethylsiloxane using the membrane transfer technique [J].
Hosokawa, K ;
Maeda, R .
JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2000, 10 (03) :415-420
[55]   Power-free poly(dimethylsiloxane) microfluidic devices for gold nanoparticle-based DNA analysis [J].
Hosokawa, K ;
Sato, K ;
Ichikawa, N ;
Maeda, M .
LAB ON A CHIP, 2004, 4 (03) :181-185
[56]   Light-assisted direct-write of 3D functional biomaterials [J].
Hribar, Kolin C. ;
Soman, Pranav ;
Warner, John ;
Chung, Peter ;
Chen, Shaochen .
LAB ON A CHIP, 2014, 14 (02) :268-275
[57]  
Hull Charles., 1988, Modern Casting, V78, P38
[58]   Micropneumatic digital logic structures for integrated microdevice computation and control [J].
Jensen, Erik C. ;
Grover, William H. ;
Mathies, Richard A. .
JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, 2007, 16 (06) :1378-1385
[59]  
Jonathan W., 2014, BIOFABRICATION, V6
[60]   High-throughput design of microfluidics based on directed bacterial motility [J].
Kaehr, Bryan ;
Shear, Jason B. .
LAB ON A CHIP, 2009, 9 (18) :2632-2637