• search hit 2 of 2
Back to Result List

Heat-Transfer Resistance at Solid-Liquid Interfaces: A Tool for The Detection of Single Nucleotide Polymorphisms in DNA.

  • In this article, we report on the heat-transfer resistance at interfaces as a novel, denaturation-based method to detect single-nucleotide polymorphisms in DNA. We observed that a molecular brush of double-stranded DNA grafted onto synthetic diamond surfaces does not notably affect the heat-transfer resistance at the solid-to-liquid interface. In contrast to this, molecular brushes of single-stranded DNA cause, surprisingly, a substantially higher heat-transfer resistance and behave like a thermally insulating layer. This effect can be utilized to identify ds-DNA melting temperatures via the switching from low- to high heat-transfer resistance. The melting temperatures identified with this method for different DNA duplexes (29 base pairs without and with built-in mutations) correlate nicely with data calculated by modeling. The method is fast, label-free (without the need for fluorescent or radioactive markers), allows for repetitive measurements, and can also be extended toward array formats. Reference measurements by confocal fluorescence microscopy and impedance spectroscopy confirm that the switching of heat-transfer resistance upon denaturation is indeed related to the thermal on-chip denaturation of DNA.

Export metadata

Additional Services

Share in Twitter Search Google Scholar
Metadaten
Author:Bart van Grinsven, Natalie vanden Bon, Hannelore Strauven, Lars Grieten, Mohammed Murib, Kathia L. Jiménez Monroy, Stoffel D. Janssens, Ken Haenen, Michael Josef SchöningORCiD, Veronique Vermeeren, Marcel Ameloot, Luc Michiels, Ronald Thoelen, Ward de Ceuninck, Patrick Wagner
DOI:https://doi.org/10.1021/nn300147e
ISSN:1936-086X
Parent Title (English):ACS Nano
Publisher:ACS Publications
Place of publication:Washington, DC
Document Type:Article
Language:English
Year of Completion:2012
Date of the Publication (Server):2012/12/18
Volume:6
Issue:3
First Page:2712
Last Page:2721
Link:https://doi.org/10.1021/nn300147e
Zugriffsart:campus
Institutes:FH Aachen / Fachbereich Medizintechnik und Technomathematik
FH Aachen / INB - Institut für Nano- und Biotechnologien
collections:Verlag / ACS Publications