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Implantable Multi-Cross-Linked Membrane-Ionogel Assembly for Reversible Non-Faradaic Neurostimulation.

Authors :
Kim JS
Kim J
Lim JW
Kim DJ
Lee JI
Choi H
Kweon H
Lee J
Yee H
Kim JH
Kim B
Kang MS
Jeong JH
Park SM
Kim DH
Source :
ACS nano [ACS Nano] 2023 Aug 08; Vol. 17 (15), pp. 14706-14717. Date of Electronic Publication: 2023 Jul 27.
Publication Year :
2023

Abstract

Neural interfaces play a major role in modulating neural signals for therapeutic purposes. To meet the demand of conformable neural interfaces for developing bioelectronic medicine, recent studies have focused on the performance of electrical neurostimulators employing soft conductors such as conducting polymers and electronic or ionic conductive hydrogels. However, faradaic charge injection at the interface of the electrode and nerve tissue causes irreversible gas evolution, oxidation of electrodes, and reduction of biological ions, thus causing undesired tissue damage and electrode degradation. Here we report a conformable neural interface engineering based on multicross-linked membrane-ionogel assembly (termed McMiA), which enables nonfaradaic neurostimulation without irreversible charge transfer reaction. The McMiA consists of a genipin-cross-linked biopolymeric ionogel coupled with a dopamine-cross-linked graphene oxide membrane to prevent ion exchange between biological and synthetic McMiA ions and to function as a bioadhesive forming covalent bonds with the target tissues. In addition, the demonstration of bioelectronic medicine via the McMiA-based neurostimulation of sciatic nerves shows the enhanced clinical utility in treating the overactive bladder syndrome. As the McMiA-based neural interface is soft, robust for bioadhesion, and stable in a physiological environment, it can offer significant advancement in biocompatibility and long-term operability for neural interface engineering.

Details

Language :
English
ISSN :
1936-086X
Volume :
17
Issue :
15
Database :
MEDLINE
Journal :
ACS nano
Publication Type :
Academic Journal
Accession number :
37498185
Full Text :
https://doi.org/10.1021/acsnano.3c02637