In this paper, we present a compact lab-on-chip system suited for label-free DNA analysis. The system can be fabricated on a conventional microscope glass slide using thin-film and thick-film technologies. It integrates a heating chamber, an electrowetting-based droplet handling system and a hydrogenated amorphous silicon (a-Si:H) photosensor array for DNA detection. At this stage of research we have designed and tested the individual functional units. The heating chamber incorporates a thin metal film heater optimized for uniform temperature distribution on a 1cm2 area. A forward-biased a-Si:H p-i-n junction is used for temperature monitoring, achieving a linear temperature dependence with -3.3 mV/K sensitivity. The droplet-handling unit, relying on the electrowetting method, is designed to move the sample from the heating chamber to the sensor array. The unit includes a set of metal pads beneath a layer of PDMS that provides both the electric insulation of the electrodes and the hydrophobic surface needed by the electrowetting technique. The UV sensor array allows measuring the DNA absorbance variation at 254nm related to the hybridization between probe-molecules contained in the sample and reference target molecules immobilized on the sensor surface. A preliminary test to detect the hybridization between a 25-mer single-stranded oligonucleotides and denaturated pBR 322 4162-mer single-stranded oligonucleotides has been carried out successfully. © 2009 Materials Research Society.

Lab-on-glass system for DNA analysis using thin and thick film technologies / Caputo, Domenico; Ceccarelli, M; DE CESARE, Giampiero; Nascetti, Augusto; Scipinotti, Riccardo. - In: MATERIALS RESEARCH SOCIETY SYMPOSIA PROCEEDINGS. - ISSN 0272-9172. - 1191:(2009), pp. 53-58. (Intervento presentato al convegno 2009 MRS Spring Meeting tenutosi a San Francisco; United States nel 13-17 April 2009) [10.1557/PROC-1191-OO06-01].

Lab-on-glass system for DNA analysis using thin and thick film technologies

CAPUTO, Domenico;DE CESARE, Giampiero;NASCETTI, Augusto;SCIPINOTTI, RICCARDO
2009

Abstract

In this paper, we present a compact lab-on-chip system suited for label-free DNA analysis. The system can be fabricated on a conventional microscope glass slide using thin-film and thick-film technologies. It integrates a heating chamber, an electrowetting-based droplet handling system and a hydrogenated amorphous silicon (a-Si:H) photosensor array for DNA detection. At this stage of research we have designed and tested the individual functional units. The heating chamber incorporates a thin metal film heater optimized for uniform temperature distribution on a 1cm2 area. A forward-biased a-Si:H p-i-n junction is used for temperature monitoring, achieving a linear temperature dependence with -3.3 mV/K sensitivity. The droplet-handling unit, relying on the electrowetting method, is designed to move the sample from the heating chamber to the sensor array. The unit includes a set of metal pads beneath a layer of PDMS that provides both the electric insulation of the electrodes and the hydrophobic surface needed by the electrowetting technique. The UV sensor array allows measuring the DNA absorbance variation at 254nm related to the hybridization between probe-molecules contained in the sample and reference target molecules immobilized on the sensor surface. A preliminary test to detect the hybridization between a 25-mer single-stranded oligonucleotides and denaturated pBR 322 4162-mer single-stranded oligonucleotides has been carried out successfully. © 2009 Materials Research Society.
2009
2009 MRS Spring Meeting
a-Si:H; Absorbances; DNA analysis
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
Lab-on-glass system for DNA analysis using thin and thick film technologies / Caputo, Domenico; Ceccarelli, M; DE CESARE, Giampiero; Nascetti, Augusto; Scipinotti, Riccardo. - In: MATERIALS RESEARCH SOCIETY SYMPOSIA PROCEEDINGS. - ISSN 0272-9172. - 1191:(2009), pp. 53-58. (Intervento presentato al convegno 2009 MRS Spring Meeting tenutosi a San Francisco; United States nel 13-17 April 2009) [10.1557/PROC-1191-OO06-01].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/56382
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