生物相容性
材料科学
纳米技术
微电子机械系统
丝绸
生物医学工程
适应性
复合材料
工程类
生态学
冶金
生物
作者
Ziyi Zhu,Zhiwen Yan,Siyuan Ni,Huiran Yang,Yating Xie,Xueying Wang,Dujuan Zou,Tao Chen,Wanqi Jiang,Jiaqi Jiang,Zhen Su,Yuxin Xia,Zhitao Zhou,Liuyang Sun,Cunyi Fan,Tiger H. Tao,Xiaoling Wei,Yun Qian,Keyin Liu
标识
DOI:10.1002/adma.202405892
摘要
Abstract Implantable bioelectronic devices, designed for both monitoring and modulating living organisms, require functional and biological adaptability. Pure silk is innovatively employed, which is known for its excellent biocompatibility, to engineer water‐triggered, geometrically reconfigurable membranes, on which functions can be integrated by Micro Electro Mechanical System (MEMS) techniques and specially functionalized silk. These devices can undergo programmed shape deformations within 10 min once triggered by water, and thus establishing stable bioelectronic interfaces with natively fitted geometries. As a testament to the applicability of this approach, a twining peripheral nerve electrode is designed, fabricated, and rigorously tested, demonstrating its efficacy in nerve modulation while ensuring biocompatibility for successful implantation.
科研通智能强力驱动
Strongly Powered by AbleSci AI