Direct deoxyribonucleic acid detection using ion-sensitive field-effect transistors based on peptide nucleic acid

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[1] Uno, Takeshi
[2] Ohtake, Toshihito
[3] 1,Tabata, Hitoshi
[4] 1,Kawai, Tomoji
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Uno, T. | 1600年 / Japan Society of Applied Physics卷 / 43期
关键词
Biosensors - Diagnosis - DNA - Field effect transistors - Molecular biology - Permittivity - Polypeptides - Semiconductor materials - Tantalum compounds - Thin films - Threshold voltage - Transducers;
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摘要
We have investigated an ion-sensitive field-effect transistor (IS-FET)-based biosensor to directly monitor the hybridization of deoxyribonucleic acid (DNA) using peptide nucleic acid (PNA) as a probe. The PNA was immobilized on a Ta2O5 gate surface using aminosilane via glutaraldehyde as a bifunctional crosslinker. Variations in surface charge density in the gate region of the IS-FET were monitored as shifts in threshold voltage after DNA hybridization. Large positive shifts in threshold voltage, as high as 170 mV, were observed during ID-VG measurements. The changes in threshold voltage observed for neutral PNA-immobilized IS-FETs were more than 5 times greater than those for negatively charged DNA-immobilized IS-FETs. Thus, this approach demonstrates that the PNA-modified IS-FET-based biosensor works more effectively as a signal transducer of genetic information. We expect potential applications in medical diagnostics and molecular biology.
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