Brain-computer interfaces (BCIs) enable direct communication between the brain and computers. However, their long-term functionality remains limited due to signal degradation caused by acute insertion trauma, chronic foreign body reaction (FBR), and biofouling at the device-tissue interface. To address these challenges, we introduce a multifunctional surface modification strategy called targeting-specific interaction and blocking nonspecific adhesion (TAB) coating for flexible fiber, achieving a synergistic integration of mechanical compliance and biochemical stability. The coating combines brain-derived neurotrophic factor (BDNF) conjugation and a lubricant-infused surface. This dual-functional design enables selective interaction with neurons and astrocytes while preventing nonspecific adhesion. Notably, high-quality single-unit neural signals were stably recorded for more than 12 months after implantation, demonstrating exceptional long-term recording performance. Integrating mechanical compatibility, antifouling properties, and selective neural cell interaction, the TAB-coated multifunctional fiber represents a transformative approach for neural implants, bridging biological systems with computational systems.
Bioadaptive liquid-infused multifunctional fibers for long-term neural recording via BDNF stabilization and enhanced neural interaction.
通过 BDNF 稳定和增强神经相互作用,实现长期神经记录的生物适应性液体注入多功能纤维
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作者:Kim Tae Young, Son Yeonzu, Yook Keun-Young, Lee Dong Gyu, Kim Young, Kim Seo Jung, Park Kijun, Lee Yurim, Lee Tae Kyung, Chung Justin J, Yang Congqi, Park Seongjun, Seo Jungmok
| 期刊: | Science Advances | 影响因子: | 12.500 |
| 时间: | 2025 | 起止号: | 2025 Sep 12; 11(37):eadz1228 |
| doi: | 10.1126/sciadv.adz1228 | 研究方向: | 神经科学 |
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