DocumentCode :
2302327
Title :
Electrically switchable DNA interface for the detection and size-analysis of DNA and protein targets
Author :
Rant, Ulrich
Author_Institution :
Walter Schottky Inst., Tech. Univ. Munchen, Garching, Germany
fYear :
2010
fDate :
7-11 Nov. 2010
Firstpage :
213
Lastpage :
213
Abstract :
We introduce a chip-compatible scheme for the label-free detection of proteins in real-time that is based on the electrically driven conformation-switching of DNA oligonucleotides on metal surfaces. The switching behavior is a sensitive indicator for the specific recognition of IgG antibodies, antibody-fragments, and small proteins like cytochrome c, which can be detected in quantities of less than 1 amol on the sensor surface. We show how the dynamics of the induced molecular motion can be monitored by measuring the high-frequency switching response as well as by time-resolved fluorescence measurements. When proteins bind to the layer, the increase in hydrodynamic drag slows the switching dynamics, which allows us to determine the size of the captured proteins. We demonstrate the identification of different antibody fragments and small proteins by means of their kinetic fingerprint. The switchDNA method represents a generic approach to simultaneously detect and size target molecules using a single analytical platform.
Keywords :
DNA; fluorescence; macromolecules; molecular biophysics; proteins; switching; DNA oligonucleotides; DNA targets; antibody fragments; antibody-fragments; chip-compatible scheme; cytochrome c; electrically switchable DNA interface; high-frequency switching response; kinetic fingerprint; label-free detection; molecular motion; protein targets; single analytical platform; size-analysis; surface metal; time-resolved fluorescence;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
IEEE Photonics Society, 2010 23rd Annual Meeting of the
Conference_Location :
Denver, CO
ISSN :
-
Print_ISBN :
978-1-4244-5368-9
Electronic_ISBN :
-
Type :
conf
DOI :
10.1109/PHOTONICS.2010.5698834
Filename :
5698834
Link To Document :
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