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High-performance, polymer-based direct cellular interfaces for electrical stimulation and recording

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Abstract
Due to the trade-off between their electrical/electrochemical performance and underwater stability, realizing polymer-based, high-performance direct cellular interfaces for electrical stimulation and recording has been very challenging. Herein, we developed transparent and conductive direct cellular interfaces based on a water-stable, high-performance poly(3,4-ethylenedioxythiophene):polystyrene sulfonate (PEDOT:PSS) film via solvent-assisted crystallization. The crystallized PEDOT:PSS on a polyethylene terephthalate (PET) substrate exhibited excellent electrical/electrochemical/optical characteristics, long-term underwater stability without film dissolution/delamination, and good viability for primarily cultured cardiomyocytes and neurons over several weeks. Furthermore, the highly crystallized, nanofibrillar PEDOT:PSS networks enabled dramatically enlarged surface areas and electrochemical activities, which were successfully employed to modulate cardiomyocyte beating via direct electrical stimulation. Finally, the high-performance PEDOT:PSS layer was seamlessly incorporated into transparent microelectrode arrays for efficient, real-time recording of cardiomyocyte action potentials with a high signal fidelity. All these results demonstrate the strong potential of crystallized PEDOT:PSS as a crucial component for a variety of versatile bioelectronic interfaces.
Author(s)
Kim, Seong-MinKim, NaraKim, YoungseokBaik, Min-SeoYoo, MinsuKim, DongyoonLee, Won-JuneKang, Dong-HeeKim, SoheeLee, KwangheeYoon, Myung-Han
Issued Date
2018-04
Type
Article
DOI
10.1038/s41427-018-0014-9
URI
https://scholar.gist.ac.kr/handle/local/13298
Publisher
Nature Publishing Group
Citation
NPG Asia Materials, v.10, no.4, pp.255 - 265
ISSN
1884-4049
Appears in Collections:
Department of Materials Science and Engineering > 1. Journal Articles
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