Jia Manping, Rolandi Marco
Department of Electrical and Computer Engineering, University of California, Santa Cruz, CA, 94064, USA.
Adv Healthc Mater. 2020 Mar;9(5):e1901372. doi: 10.1002/adhm.201901372. Epub 2020 Jan 24.
Bioelectronics devices that directly interface with cells and tissue have applications in neural and cardiac stimulation and recording, electroceuticals, and brain machine interfaces for prostheses. The interface between bioelectronic devices and biological tissue is inherently challenging due to the mismatch in both mechanical properties (hard vs soft) and charge carriers (electrons vs ions). In addition to conventional metals and silicon, new materials have bridged this interface, including conducting polymers, carbon-based nanomaterials, as well as ion-conducting polymers and hydrogels. This review provides an update on advances in soft bioelectronic materials for current and future therapeutic applications. Specifically, this review focuses on soft materials that can conduct both electrons and ions, and also deliver drugs and small molecules. The future opportunities and emerging challenges in the field are also highlighted.
能够直接与细胞和组织连接的生物电子设备在神经和心脏刺激与记录、电药物以及假肢的脑机接口方面有应用。由于生物电子设备与生物组织之间在机械性能(硬对软)和电荷载体(电子对离子)上的不匹配,它们之间的接口本质上具有挑战性。除了传统的金属和硅之外,新型材料弥合了这个接口,包括导电聚合物、碳基纳米材料以及离子导电聚合物和水凝胶。本综述提供了用于当前和未来治疗应用的软生物电子材料进展的最新情况。具体而言,本综述重点关注能够传导电子和离子、还能递送药物和小分子的软材料。该领域未来的机遇和新出现的挑战也得到了强调。