Microfabricated structures for integrated DNA analysis.
- 28 May 1996
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 93 (11) , 5556-5561
- https://doi.org/10.1073/pnas.93.11.5556
Abstract
Photolithographic micromachining of silicon is a candidate technology for the construction of high-throughput DNA analysis devices. However, the development of complex silicon microfabricated systems has been hindered in part by the lack of a simple, versatile pumping method for integrating individual components. Here we describe a surface-tension-based pump able to move discrete nanoliter drops through enclosed channels using only local heating. This thermocapillary pump can accurately mix, measure, and divide drops by simple electronic control. In addition, we have constructed thermal-cycling chambers, gel electrophoresis channels, and radiolabeled DNA detectors that are compatible with the fabrication of thermocapillary pump channels. Since all of the components are made by conventional photolithographic techniques, they can be assembled into more complex integrated systems. The combination of pump and components into self-contained miniaturized devices may provide significant improvements in DNA analysis speed, portability, and cost. The potential of microfabricated systems lies in the low unit cost of silicon-based construction and in the efficient sample handling afforded by component integration.Keywords
This publication has 12 references indexed in Scilit:
- Whole-Genome Random Sequencing and Assembly of Haemophilus influenzae RdScience, 1995
- PCR in a silicon microstructureClinical Chemistry, 1994
- A genetic map of the mouse with 4,006 simple sequence length polymorphismsNature Genetics, 1994
- The 1993–94 Généthon human genetic linkage mapNature Genetics, 1994
- Micromachining a Miniaturized Capillary Electrophoresis-Based Chemical Analysis System on a ChipScience, 1993
- POLYMERASE CHAIN REACTION STRATEGYAnnual Review of Biochemistry, 1992
- mTFE3, an X-linked transcriptional activator containing basic helix-loop-helix and zipper domains, utilizes the zipper to stabilize both DNA binding and multimerization.Molecular and Cellular Biology, 1992
- Automated DNA diagnostics using an ELISA-based oligonucleotide ligation assay.Proceedings of the National Academy of Sciences, 1990
- ABUNDANT CLASS OF HUMAN DNA POLYMORPHISMS WHICH CAN BE TYPED USING THE POLYMERASE CHAIN-REACTION1989
- [21] Specific synthesis of DNA in vitro via a polymerase-catalyzed chain reactionPublished by Elsevier ,1987