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用于智能生物界面的丝绸基导电材料。

Silk-based conductive materials for smart biointerfaces.

作者信息

Fu Fanfan, Liu Dongmei, Wu Yilun

机构信息

School of Environmental and Biological Engineering Nanjing University of Science and Technology Nanjing China.

School of Materials Science and Engineering Nanyang Technological University Singapore Singapore.

出版信息

Smart Med. 2023 Apr 17;2(2):e20230004. doi: 10.1002/SMMD.20230004. eCollection 2023 May.

Abstract

Silk-based conductive materials are widely used in biointerface applications, such as artificial epidermal sensors, soft and implantable bioelectronics, and tissue/cell scaffolds. Such biointerface materials require coordinated physicochemical, biological, and mechanical properties to meet current practical needs and future sophisticated demands. However, it remains a challenge to formulate silk-based advanced materials with high electrical conductivity, good biocompatibility, mechanical robustness, and in some cases, tissue adhesion ability without compromising other physicochemical properties. In this review, we highlight recent progress in the development of functional conductive silk-based advanced materials with different morphologies. Then, we reviewed the advanced paradigms of these silk materials applied as wearable flexible sensors, implantable electronics, and tissue/cell engineering with perspectives on the application challenges. Silk-based conductive materials can serve as promising building blocks for biomedical devices in personalized healthcare and other fields of bioengineering.

摘要

基于丝绸的导电材料广泛应用于生物界面应用领域,如人造表皮传感器、柔软且可植入的生物电子器件以及组织/细胞支架。这类生物界面材料需要具备协同的物理化学、生物学和机械性能,以满足当前的实际需求和未来复杂的要求。然而,要制备出具有高电导率、良好生物相容性、机械稳健性,且在某些情况下具备组织粘附能力,同时又不影响其他物理化学性能的基于丝绸的先进材料,仍然是一项挑战。在本综述中,我们重点介绍了不同形态的功能性导电丝绸基先进材料的最新研究进展。然后,我们从应用挑战的角度,综述了这些丝绸材料作为可穿戴柔性传感器、可植入电子器件以及组织/细胞工程应用的先进范例。基于丝绸的导电材料有望成为个性化医疗和其他生物工程领域生物医学设备的理想构建材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0af5/11236014/d50f35e371ca/SMMD-2-e20230004-g003.jpg

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