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Low-frequency electrophoretic actuation of nanoscale optoentropic transduction mechanisms
Authors:Sullivan Benjamin David  Dehlinger Dietrich A  Zlatanovic Sanja  Esener Sadik A  Heller Michael J
Affiliation:Department of Bioengineering, University of California, San Diego, 9500 Gilman Drive, La Jolla, California 92093, USA.
Abstract:Inherent bistabilities within DNA-assembled fluorescent resonant energy transfer systems demonstrated time-varying optical signals in response to an electrophoretic driving force. Frequency responses of electrophoretically driven FRET systems were shown to be sequence specific. Integration of these signals over time gave near single-molecule sensitivity within a high background of autofluorescence. This research suggests that externally driven nanoscale mechanical systems may help improve information flow within morphologically intact specimens.
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