The University of Southampton
University of Southampton Institutional Repository

DNA, nanoparticles and photons - new approaches for clinical diagnostics

DNA, nanoparticles and photons - new approaches for clinical diagnostics
DNA, nanoparticles and photons - new approaches for clinical diagnostics
A number of nanobiomaterial fabrication approaches have been developed which exploit the recognition properties of DNA. We are currently developing these approaches for i) the detection of single molecules (or low copy numbers) of DNA in the solution and on patterned surfaces for the direct detection of markers for hereditary and infectious diseases and cancer and ii) novel nanoelectronic devices.
0780397738
Melvin, T.
fd87f5eb-2bb9-48fa-b7be-7100ace9c50f
Dyadshuka, L.
ee0539c6-b4d4-4d7c-b36b-6fc4a9372822
Weld, A.M.
89c3943c-3c55-4406-b3d7-0fecb527f65c
Yin, H.
04f9aabf-323a-4a34-a432-66511811790a
Adam, A.
4b34f37f-aadf-4e2f-b018-f38fe8bf2e21
Brown, T.
a64aae36-bb30-42df-88a2-11be394e8c89
Jaiswal, S.
3165d05c-d7ad-445b-8266-ecfdf60c7fcf
Boudakos, K.
4ff90997-c96f-474e-a9cc-75ff4c7580f0
Smith, D.C.
d9b2c02d-b7ea-498b-9ea1-208a1681536f
Baumberg, J.J.
78e1ea7e-8c70-404c-bf84-59aafe75cd07
Booy, F.
58af33aa-3828-4da2-8f18-069c353ee5b8
Melvin, T.
fd87f5eb-2bb9-48fa-b7be-7100ace9c50f
Dyadshuka, L.
ee0539c6-b4d4-4d7c-b36b-6fc4a9372822
Weld, A.M.
89c3943c-3c55-4406-b3d7-0fecb527f65c
Yin, H.
04f9aabf-323a-4a34-a432-66511811790a
Adam, A.
4b34f37f-aadf-4e2f-b018-f38fe8bf2e21
Brown, T.
a64aae36-bb30-42df-88a2-11be394e8c89
Jaiswal, S.
3165d05c-d7ad-445b-8266-ecfdf60c7fcf
Boudakos, K.
4ff90997-c96f-474e-a9cc-75ff4c7580f0
Smith, D.C.
d9b2c02d-b7ea-498b-9ea1-208a1681536f
Baumberg, J.J.
78e1ea7e-8c70-404c-bf84-59aafe75cd07
Booy, F.
58af33aa-3828-4da2-8f18-069c353ee5b8

Melvin, T., Dyadshuka, L., Weld, A.M., Yin, H., Adam, A., Brown, T., Jaiswal, S., Boudakos, K., Smith, D.C., Baumberg, J.J. and Booy, F. (2006) DNA, nanoparticles and photons - new approaches for clinical diagnostics. International Symposium on Biophotonics, Nanophotonics and Metamaterials, Hangzhou Shi, China. 16 - 18 Oct 2006. (doi:10.1109/METAMAT.2006.334986).

Record type: Conference or Workshop Item (Paper)

Abstract

A number of nanobiomaterial fabrication approaches have been developed which exploit the recognition properties of DNA. We are currently developing these approaches for i) the detection of single molecules (or low copy numbers) of DNA in the solution and on patterned surfaces for the direct detection of markers for hereditary and infectious diseases and cancer and ii) novel nanoelectronic devices.

This record has no associated files available for download.

More information

e-pub ahead of print date: October 2006
Venue - Dates: International Symposium on Biophotonics, Nanophotonics and Metamaterials, Hangzhou Shi, China, 2006-10-16 - 2006-10-18
Organisations: Chemistry, Physics & Astronomy, Electronics & Computer Science

Identifiers

Local EPrints ID: 54056
URI: http://eprints.soton.ac.uk/id/eprint/54056
ISBN: 0780397738
PURE UUID: 02503620-7df0-4954-b955-d5c46a32fb90

Catalogue record

Date deposited: 11 Aug 2008
Last modified: 15 Mar 2024 10:44

Export record

Altmetrics

Contributors

Author: T. Melvin
Author: L. Dyadshuka
Author: A.M. Weld
Author: H. Yin
Author: A. Adam
Author: T. Brown
Author: S. Jaiswal
Author: K. Boudakos
Author: D.C. Smith
Author: J.J. Baumberg
Author: F. Booy

Download statistics

Downloads from ePrints over the past year. Other digital versions may also be available to download e.g. from the publisher's website.

View more statistics

Atom RSS 1.0 RSS 2.0

Contact ePrints Soton: eprints@soton.ac.uk

ePrints Soton supports OAI 2.0 with a base URL of http://eprints.soton.ac.uk/cgi/oai2

This repository has been built using EPrints software, developed at the University of Southampton, but available to everyone to use.

We use cookies to ensure that we give you the best experience on our website. If you continue without changing your settings, we will assume that you are happy to receive cookies on the University of Southampton website.

×