Fabrication of PEDOT:PSS-based solution gated organic electrochemical transistor array for cancer cells detection

Organic electrochemical transistor (OECT) was applied in chemical and biological sensing. In this work, we developed a simple and repeatable method to fabricate OECT array, which had been successfully used to detect cancer cells. PEDPT:PSS conductive film between source and drain electrodes were pat...

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Veröffentlicht in:RSC advances 2023-12, Vol.13 (51), p.36416-36423
Hauptverfasser: Song, Qingyuan, Wang, Weiyi, Liang, Jinjin, Chen, Chaohui, Cao, Yiping, Cai, Bo, Chen, Bolei, He, Rongxiang
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Sprache:eng
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Zusammenfassung:Organic electrochemical transistor (OECT) was applied in chemical and biological sensing. In this work, we developed a simple and repeatable method to fabricate OECT array, which had been successfully used to detect cancer cells. PEDPT:PSS conductive film between source and drain electrodes were patterned through photolithography, which can achieve uniform devices with same electrical characterization. When MCF-7 cancer cells are captured on the PEDOT:PSS surface via specifical antibody, the transfer characteristic of OECT shifts to higher gate electrode voltage due to the electrostatic interaction between cancer cells and device. The effective gate voltage shift can reach about 63 mV when the concentration of cancer cells increased to 5000. The shift of effective gate voltage is related to the cancer cell morphology, which is increased in the first 1 h and decreased when the capture time was larger than 1 h. The device of OECT array can increase the sample flux and make the detection result more accurate. It is expected that OECT array will have promising practical applications in single cancer cell detection in the future. In this work, we developed a simple and repeatable method to fabricate OECT array through photolithography, which can achieve uniform devices with same electrical characterization. The devices had been successfully used to detect cancer cells.
ISSN:2046-2069
2046-2069
DOI:10.1039/d3ra06800e