FLASH: A rapid method for prototyping paper-based microfluidic devices
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- 22 August 2008
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Lab on a Chip
- Vol. 8 (12), 2146-2150
- https://doi.org/10.1039/b811135a
Abstract
This article describes FLASH (Fast Lithographic Activation of Sheets), a rapid method for laboratory prototyping of microfluidic devices in paper. Paper-based microfluidic devices are emerging as a new technology for applications in diagnostics for the developing world, where low cost and simplicity are essential. FLASH is based on photolithography, but requires only a UV lamp and a hotplate; no clean-room or special facilities are required (FLASH patterning can even be performed in sunlight if a UV lamp and hotplate are unavailable). The method provides channels in paper with dimensions as small as 200 µm in width and 70 µm in height; the height is defined by the thickness of the paper. Photomasks for patterning paper-based microfluidic devices can be printed using an ink-jet printer or photocopier, or drawn by hand using a waterproof black pen. FLASH provides a straightforward method for prototyping paper-based microfluidic devices in regions where the technological support for conventional photolithography is not available.Keywords
This publication has 9 references indexed in Scilit:
- Simple Telemedicine for Developing Regions: Camera Phones and Paper-Based Microfluidic Devices for Real-Time, Off-Site DiagnosisAnalytical Chemistry, 2008
- Patterned Paper as a Platform for Inexpensive, Low‐Volume, Portable BioassaysAngewandte Chemie International Edition, 2007
- Lab-on-a-chip devices for global health: Past studies and future opportunitiesLab on a Chip, 2006
- Health Innovation Networks to Help Developing Countries Address Neglected DiseasesScience, 2005
- Point-of-care immunotesting: Approaching the analytical performance of central laboratory methodsClinical Biochemistry, 2005
- Diagnostics for the developing worldNature Reviews Microbiology, 2004
- Microfluidic devices fabricated in Poly(dimethylsiloxane) for biological studiesElectrophoresis, 2003
- Top ten biotechnologies for improving health in developing countriesNature Genetics, 2002
- Negative photoresists for optical lithographyIBM Journal of Research and Development, 1997