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Fabrication and sensing property for conducting polymer nanowire-based biosensor for detection of immunoglobulin G

Authors
Park, Eun-SilJang, Dae-HwanLee, Young-InJung, Chan WooLim, Dong WooKim, Bum SungJeong, Young-keunMyung, Nosang V.Choa, Yong-Ho
Issue Date
Sep-2014
Publisher
SPRINGER
Keywords
Conducting polymer nanowire; Biosensor; Electrospinning; Surface immobilization
Citation
RESEARCH ON CHEMICAL INTERMEDIATES, v.40, no.7, pp.2565 - 2570
Indexed
SCIE
SCOPUS
Journal Title
RESEARCH ON CHEMICAL INTERMEDIATES
Volume
40
Number
7
Start Page
2565
End Page
2570
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/21977
DOI
10.1007/s11164-014-1669-7
ISSN
0922-6168
Abstract
Conducting polymers are excellent sensing materials in the design of bioanalytical sensors because of their electronic conductivity, low energy optical transitions, biocompatibility, and room temperature operation. Among them, Polypyrrole (Ppy) is one of the most extensively used conducting polymers because of a number of properties such as redox activity, rapid electron transfer, and ability to link a variety of biomolecules to pyrrole groups by chemical treatment. In this study, Ppy nanowires were synthesized by an electrospinning method. The nanowires were prepared from a solution mixture of Ppy and poly(ethylene oxide). The method of detection in such a device is based on the selective binding of antigen onto an antibody that is covalently attached to the nanowires. Thus, anti-IgG was immobilized on Ppy nanowires using an EDC {[N-(3-dimethyl aminopropyl)-N-2-ethylcarbodiimide hydrochloride]}-NHS(N-hydrosuccinimide) modified technique. Fluorescence images of BSA-FITC (fluorescein isothiocyanate labeling of bovine serum albumin) conjugation demonstrated that antibody was functionalized on the Ppy nanowires without non-specific binding and facilitated selective detection of antigen. Current-voltage (I-V) characterization was used to monitor the change in the conductivity of nanowires while the specific binding interaction occurred. These results of electrical properties enable Ppy nanowire-based biosensors to detect biomolecules in real-time.
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COLLEGE OF ENGINEERING SCIENCES > DEPARTMENT OF MATERIALS SCIENCE AND CHEMICAL ENGINEERING > 1. Journal Articles
COLLEGE OF ENGINEERING SCIENCES > DEPARTMENT OF BIONANO ENGINEERING > 1. Journal Articles

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Lim, Dong Woo
ERICA 공학대학 (DEPARTMENT OF BIONANO ENGINEERING)
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