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Integration of reconfigurable microchannels into aligned three-dimensional neural networks for spatially controllable neuromodulation
- Jeong, Sohyeon;
- Kang, Hyun Wook;
- Kim, So Hyun;
- Hong, Gyu-Sang;
- Nam, Min-Ho;
- ... Bang, Seokyoung;
- 외 6명
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7초록
Anisotropically organized neural networks are indispensable routes for functional connectivity in the brain, which remains largely unknown. While prevailing animal models require additional preparation and stimulation-applying devices and have exhibited limited capabilities regarding localized stimulation, no in vitro platform exists that permits spatiotemporal control of chemo-stimulation in anisotropic three-dimensional (3D) neural networks. We present the integration of microchannels seamlessly into a fibril-aligned 3D scaffold by adapting a single fabrication principle. We investigated the underlying physics of elastic microchannels' ridges and interfacial sol-gel transition of collagen under compression to determine a critical window of geometry and strain. We demonstrated the spatiotemporally resolved neuromodulation in an aligned 3D neural network by local deliveries of KCl and Ca2+ signal inhibitors, such as tetrodotoxin, nifedipine, and mibefradil, and also visualized Ca2+ signal propagation with a speed of similar to 3.7 mu m/s. We anticipate that our technology will pave the way to elucidate functional connectivity and neurological diseases associated with transsynaptic propagation.
키워드
- 제목
- Integration of reconfigurable microchannels into aligned three-dimensional neural networks for spatially controllable neuromodulation
- 저자
- Jeong, Sohyeon; Kang, Hyun Wook; Kim, So Hyun; Hong, Gyu-Sang; Nam, Min-Ho; Seong, Jihye; Yoon, Eui-Sung; Cho, Il-Joo; Chung, Seok; Bang, Seokyoung; Kim, Hong Nam; Choi, Nakwon
- 발행일
- 2023-03
- 유형
- Article
- 저널명
- Science advances
- 권
- 9
- 호
- 10