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A biodegradable and flexible neural interface for transdermal optoelectronic modulation and regeneration of peripheral nerves.

Authors :
Sun, Pengcheng
Li, Chaochao
Yang, Can
Sun, Mengchun
Hou, Hanqing
Guan, Yanjun
Chen, Jinger
Liu, Shangbin
Chen, Kuntao
Ma, Yuan
Huang, Yunxiang
Li, Xiangling
Wang, Huachun
Wang, Liu
Chen, Shengfeng
Cheng, Haofeng
Xiong, Wei
Sheng, Xing
Zhang, Milin
Peng, Jiang
Source :
Nature Communications; 6/3/2024, Vol. 15 Issue 1, p1-14, 14p
Publication Year :
2024

Abstract

Optoelectronic neural interfaces can leverage the photovoltaic effect to convert light into electrical current, inducing charge redistribution and enabling nerve stimulation. This method offers a non-genetic and remote approach for neuromodulation. Developing biodegradable and efficient optoelectronic neural interfaces is important for achieving transdermal stimulation while minimizing infection risks associated with device retrieval, thereby maximizing therapeutic outcomes. We propose a biodegradable, flexible, and miniaturized silicon-based neural interface capable of transdermal optoelectronic stimulation for neural modulation and nerve regeneration. Enhancing the device interface with thin-film molybdenum significantly improves the efficacy of neural stimulation. Our study demonstrates successful activation of the sciatic nerve in rodents and the facial nerve in rabbits. Moreover, transdermal optoelectronic stimulation accelerates the functional recovery of injured facial nerves. Optoelectronic neural interfaces allow for non-genetic and remote modulation of neural activity. Here, the authors propose a biodegradable, flexible and miniaturized neural interface based on molybdenum-modified silicon diodes that allows transdermal neuromodulation and promotes nerve regeneration. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20411723
Volume :
15
Issue :
1
Database :
Complementary Index
Journal :
Nature Communications
Publication Type :
Academic Journal
Accession number :
177647823
Full Text :
https://doi.org/10.1038/s41467-024-49166-4