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用于慢性癫痫监测的自修复且高粘性的聚二甲基硅氧烷基弹性体

Self-healing and highly adhesive conductive polydimethylsiloxane-based elastomers for chronic epilepsy monitoring.

作者信息

Tang Miao, Lei Ke, Zhao Xingying, Hu Xifeiling, He Quansheng, Zhang Ke, Ma Xianhui, Ni Hualiang, Shu Yousheng, Li Zili

机构信息

Jinshan Hospital, Institute for Translational Brain Science, Fudan University, Shanghai 200433, China.

Aoyi Information Technology Co., Ltd, Shanghai 200433, China.

出版信息

Nanoscale. 2025 Apr 3;17(14):8624-8633. doi: 10.1039/d5nr00171d.

Abstract

Flexible substrate materials with high adhesion, high stretchability, and low impedance are essential to ensure long-term stable acquisition of electrophysiological signals with less tissue inflammation. Polydimethylsiloxane is a promising candidate owing to its inherent flexibility and biocompatibility; however, its poor adhesion to the skin and excessive stiffness of tissue interfaces limit its application in this field. To address these challenges, we developed a flexible electrode system based on crosslinked block polyborosiloxane and carbon nanotube (C-PBS/CNT) elastomers carrying hydroxyl groups through a thiol-ene reaction. The composite exhibits enhanced adhesion to both the skin and skull, high stretchability, and tunable stiffness ranging from 10 to over 200 kPa, enabling adaptability to the long-term monitoring of epileptic activity and other application scenarios. Moreover, the C-PBS/CNT composite elastomer demonstrated excellent self-healing performance owing to its dynamic boronate ester and hydrogen bonds. The packaged C-PBS/CNT electrode demonstrates low impedance for efficient multi-channel acquisition of epileptic activity under humid conditions. These innovations enable a precise analysis of cortical epileptic-activity propagation and provide an essential technological platform for the prediction and treatment of epileptic seizures, paving the way for next-generation wearable biomedical devices.

摘要

具有高附着力、高拉伸性和低阻抗的柔性基底材料对于确保长期稳定获取电生理信号并减少组织炎症至关重要。聚二甲基硅氧烷因其固有的柔韧性和生物相容性而成为一个有前途的候选材料;然而,它对皮肤的附着力差以及组织界面的过度僵硬限制了其在该领域的应用。为了应对这些挑战,我们通过硫醇-烯反应开发了一种基于交联嵌段聚硼硅氧烷和带有羟基的碳纳米管(C-PBS/CNT)弹性体的柔性电极系统。该复合材料对皮肤和颅骨均表现出增强的附着力、高拉伸性以及10至超过200 kPa的可调刚度,能够适应癫痫活动的长期监测和其他应用场景。此外,C-PBS/CNT复合弹性体由于其动态硼酸酯和氢键而表现出优异的自愈性能。封装后的C-PBS/CNT电极在潮湿条件下具有低阻抗,可高效多通道采集癫痫活动。这些创新使得能够对皮质癫痫活动传播进行精确分析,并为癫痫发作的预测和治疗提供了一个重要的技术平台,为下一代可穿戴生物医学设备铺平了道路。

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