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Published online 17 May 2004

Nucleic Acids Research, 2004, Vol. 32, No. 9 e70
© 2004 Oxford University Press

An on-chip thin film photodetector for the quantification of DNA probes and targets in microarrays

F. Fixe*,1,2, V. Chu1, D. M. F. Prazeres2 and J. P. Conde1,3

1 INESC Microsistemas e Nanotecnologias (INESC-MN), Rua Alves Redol, 9, 1000-029 Lisboa, Portugal, 2 Centro de Engenharia Biológica e Química and 3 Department of Materials Engineering, Instituto Superior Técnico, Av. Rovisco Pais, 1049-001 Lisboa, Portugal

*To whom correspondence should be addressed. Tel: +351 21 310 0300; Fax: +351 21 314 5843; Email: ffixe{at}inesc-mn.pt

Received February 13, 2004; Revised and Accepted April 8, 2004

A flat microdevice which incorporates a thin-film amorphous silicon (a-Si:H) photodetector with an upper layer of functionalized SiO2 is used to quantify the density of both immobilized and hybridized DNA oligonucleotides labeled with a fluorophore. The device is based on the photoconductivity of hydrogenated amorphous silicon in a coplanar electrode configuration. Excitation, with near UV/blue light, of a single-stranded DNA molecule tagged with the fluorophore 1-(3-(succinimidyloxycarbonyl)benzyl)-4-(5-(4-methoxyphenyl)oxazol-2-yl) pyridinium bromide (PyMPO), results in the emission of visible light. The emitted light is then converted into an electrical signal in the photodetector, thus allowing the optoelectronic detection of the DNA molecules. The detection limit of the present device is of the order of 1 x 1012 molecules/cm2 and is limited by the efficiency of the filtering of the excitation light. A surface density of 33.5 ± 4.0 pmol/cm2 was measured for DNA covalently immobilized to the functionalized SiO2 thin film and a surface density of 3.7 ± 1.5 pmol/cm2 was measured for the complementary DNA hybridized to the bound DNA. The detection concept explored can enable on-chip electronic data acquisition, improving both the speed and the reliability of DNA microarrays.


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