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Volume 11, Issue 6, Pages 360-367 (December 2006)


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Integrated Microfluidic CustomArray Device for Bacterial Genotyping and Identification

Robin Hui LiuCorresponding Author Informationemail address, Sandra B. Munro, Tai Nguyen, Tony Siuda, Dominic Suciu, Michael Bizak, Mike Slota, H. Sho Fuji, David Danley, Andy McShea

The ongoing threat of the potential use of biothreat agents (such as Bacillus anthracis) as a biochemical weapon emphasizes the need for a rapid, miniature, fully automated, and highly specific detection assay. An integrated and self-contained microfluidic device has been developed to rapidly detect B. anthracis and many other bacteria. The device consists of a semiconductor-based DNA microarray chip with 12,000 features and a microfluidic cartridge that automates the fluid handling steps required to carry out a genotyping assay for pathogen identification. This fully integrated and disposable device consists of low-cost microfluidic pumps, mixers, valves, fluid channels, reagent storage chambers, and DNA microarray silicon chip. Microarray hybridization and subsequent fluid handling and reactions were performed in this fully automated and miniature device before fluorescent image scanning of the microarray chip. The genotyping results showed that the device was able to identify and distinguish B. anthracis from the other members of the closely related Bacillus cereus group, demonstrating the potential of integrated microfluidic and microarray technology for highly specific pathogen detection. The device provides a cost-effective solution to eliminate labor-intensive and time-consuming fluid handling steps and allows the detection and identification of biological warfare agents in a rapid and automated fashion.

CombiMatrix Corp., Mukilteo, WA, USA

Corresponding Author InformationCorrespondence: Robin Hui Liu, Ph.D., CombiMatrix Corp., 6500 Harbour Heights Parkway, Mukilteo, WA 98275, USA; Phone: +1.425.493.2259

PII: S1535-5535(06)00317-0

doi:10.1016/j.jala.2006.07.004


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