Sequence Specific Label-Free DNA Sensing Using Film-Bulk-Acoustic-Resonators

A label-free biosensor (for detection of DNA sequences) based on film-bulk-acoustic-resonator (FBAR) is presented in this letter. The FBAR's resonant frequency shifts to a lower value when a complementary single-strand DNA sequence is hybridized with a DNA probe sequence on an Au-coated FBAR su...

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Veröffentlicht in:IEEE sensors journal 2007-12, Vol.7 (12), p.1587-1588
Hauptverfasser: Hao Zhang, Marma, M.S., Bahl, S.K., Eun Sok Kim, McKenna, C.E.
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container_end_page 1588
container_issue 12
container_start_page 1587
container_title IEEE sensors journal
container_volume 7
creator Hao Zhang
Marma, M.S.
Bahl, S.K.
Eun Sok Kim
McKenna, C.E.
description A label-free biosensor (for detection of DNA sequences) based on film-bulk-acoustic-resonator (FBAR) is presented in this letter. The FBAR's resonant frequency shifts to a lower value when a complementary single-strand DNA sequence is hybridized with a DNA probe sequence on an Au-coated FBAR surface. The sensor is capable of distinguishing a complementary DNA that is mismatched to a probe DNA by a single nucleotide. The label-free, highly sensitive and selective, and real-time detection of DNA sequence could easily be made into an array for combinatory DNA sequencing, and could possibly help geneticists to detect specific DNA sequences accurately and fast, without any expensive optical scanning or imaging.
doi_str_mv 10.1109/JSEN.2007.905035
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subjects Biomedical optical imaging
Biosensor
Biosensors
DNA
DNA hybridization
Film bulk acoustic resonators
film-bulk-acoustic-resonator (FBAR)
mass sensor
Optical arrays
Optical films
Optical sensors
Probes
Resonant frequency
Sequences
title Sequence Specific Label-Free DNA Sensing Using Film-Bulk-Acoustic-Resonators
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