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基于天然生物聚合物的生物相容性可拉伸生物电子导体。

Natural Biopolymer-Based Biocompatible Conductors for Stretchable Bioelectronics.

机构信息

Department of Electrical Engineering and Information Systems, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.

Center for Emergent Matter Science, RIKEN, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.

出版信息

Chem Rev. 2021 Feb 24;121(4):2109-2146. doi: 10.1021/acs.chemrev.0c00897. Epub 2021 Jan 18.

Abstract

Biocompatible conductors are important components for soft and stretchable bioelectronics for digital healthcare, which have attracted extensive research efforts. Natural biopolymers, compared to other polymers, possess unique features that make them promising building blocks for biocompatible conductors, such as good biocompatibility/biodegradability, natural abundance, sustainability, and capability, can be processed into various functional formats with tunable material properties under benign conditions. In this comprehensive review, we focus on the recent advances in biocompatible conductors based on natural biopolymers for stretchable bioelectronics. We first give a brief introduction of conductive components and natural polymers and summarize the recent development of biocompatible conductors based on representative natural biopolymers including protein (silk), polypeptide (gelatin), and polysaccharide (alginate). The design and fabrication strategies for biocompatible conductors based on these representative biopolymers are outlined, after the chemical structure and properties of such biopolymers are presented. Then we discuss the electronic component-biopolymer interface and bioelectronic-biological tissue (skin and internal tissues) interface, highlight various fabrication techniques of biocompatible conductors for soft bioelectronics, and introduce representative examples of utilizing natural biopolymer-based biocompatible conductors for on-skin bioelectronics, textile-based wearable electronics, and implantable bioelectronics for digital healthcare. Finally, we present concluding remarks on challenges and prospects for designing natural biopolymers for soft biocompatible conductors and bioelectronics.

摘要

生物相容性导体是数字医疗保健用柔软和可拉伸生物电子学的重要组成部分,已引起广泛的研究关注。与其他聚合物相比,天然生物聚合物具有独特的特性,使它们成为有前途的生物相容性导体构建块,例如良好的生物相容性/可生物降解性、丰富性、可持续性和多功能性,可以在良性条件下加工成具有可调材料性能的各种功能形式。在这篇全面的综述中,我们专注于基于天然生物聚合物的可拉伸生物电子学用生物相容性导体的最新进展。我们首先简要介绍了导电组件和天然聚合物,并总结了基于代表性天然生物聚合物(包括蛋白质(丝)、多肽(明胶)和多糖(海藻酸盐))的生物相容性导体的最新发展。在介绍这些代表性生物聚合物的化学结构和性能之后,概述了基于这些代表性生物聚合物的生物相容性导体的设计和制造策略。然后,我们讨论了电子元件-生物聚合物界面和生物电子-生物组织(皮肤和内部组织)界面,强调了用于软生物电子学的各种生物相容性导体制造技术,并介绍了利用基于天然生物聚合物的生物相容性导体用于皮肤生物电子学、基于纺织品的可穿戴电子学和用于数字医疗的可植入生物电子学的代表性实例。最后,我们对设计用于软生物相容性导体和生物电子学的天然生物聚合物提出了挑战和展望。

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