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Publication

Heat-transfer based characterization of DNA on synthetic sapphire chips

Journal Contribution - Journal Article

In this study, we show that synthetic sapphire (Al2O3), an established implant material, can also serve as a platform material for biosensors comparable to nanocrystalline diamond. Sapphire chips, beads, and powder were first modified with (3-aminopropyl) triethoxysilane (APTES), followed by succinic anhydride (SA), and finally single-stranded probe DNA was EDC coupled to the functionalized layer. The presence of the APTES-SA layer on sapphire powders was confirmed by thermogravimetric analyis and Fourier-transform infrared spectroscopy. Using planar sapphire chips as substrates and X-ray photoelectron spectroscopy (XPS) as surface-sensitive tool, the sequence of individual layers was analyzed with respect to their chemical state, enabling the quantification of areal densities of the involved molecular units. Fluorescence microscopy was used to demonstrate the hybridization of fluorescently tagged target DNA to the probe DNA, including denaturation- and re-hybridization experiments. Due to its high thermal conductivity, synthetic sapphire is especially suitable as a chip material for the heat-transfer method, which was employed to distinguish complementary- and non-complementary DNA duplexes containing single-nucleotide polymorphisms. These results indicate that it is possible to detect mutations electronically with a chemically resilient and electrically insulating chip material.
Journal: SENSORS AND ACTUATORS B-CHEMICAL
ISSN: 0925-4005
Volume: 230
Pages: 260 - 271
Publication year:2016
Keywords:synthetic sapphire, nanocrystalline diamond, heat-transfer method, fourier-transform infrared spectroscopy, thermogravimetric analysis, X-ray photoelectron spectroscopy, confocal fluorescence microscopy, single-nucleotide polymorphisms in DNA
BOF-keylabel:yes
IOF-keylabel:yes
BOF-publication weight:6
CSS-citation score:1
Authors:International
Authors from:Government, Higher Education, Private
Accessibility:Closed