DOE-FG02-00ER62797 Final Report | |
Sweedler, J.V. | |
University of Illinois (United States) | |
关键词: Dna; 59 Basic Biological Sciences; Metabolites; Mixtures; Proteins; | |
DOI : 10.2172/835220 RP-ID : DOE/ER/62797-6 RP-ID : FG02-99ER62797 RP-ID : 835220 |
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美国|英语 | |
来源: UNT Digital Library | |
【 摘 要 】
Specific Aims The overall goal of this proposal has been to develop and interface a new technology, molecular gates, with microfabricated systems to add an important capability to microfabricated DNA measurement systems. This project specifically focused on demonstrating how molecular gates could be used to capture a single analyte band, among a stream of bands from a separation or a flow injection analysis experiment, and release it for later measurement, thus allowing further manipulations on the selected analyte. Since the original proposal, the molecular gate concept has been greatly expanded to allow the gates to be used as externally controllable intelligent interconnects in multilayer microfluidic networks. We have demonstrated: (1) the ability of the molecular gates to work with a much wider range of biological molecules including DNA, proteins and small metabolites; and (2) the capability of performing an electrophoretic separation and sequestering individual picoliter volume components (or even classes of components) into separate channels for further analysis. Both capabilities will enable characterization of small mass amounts of complex mixtures of DNA, proteins and even small molecules--allowing them to be further separated and chemically characterized.
【 预 览 】
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835220.pdf | 305KB | download |