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基于丝素蛋白/聚苯胺/AgNPs 的灵活抗菌导电水凝胶,可在电刺激下进行运动感应和促进伤口愈合。

Flexible and antibacterial conductive hydrogels based on silk fibroin/polyaniline/AgNPs for motion sensing and wound healing promotion under electrical stimulation.

机构信息

Department of Plastic and Burn Surgery, West China Hospital, Sichuan University, Chengdu, 610041, China.

College of Biomass Science and Engineering, Sichuan University, Chengdu, 610065, PR China.

出版信息

J Mater Chem B. 2024 Oct 17;12(40):10346-10356. doi: 10.1039/d4tb01505c.

Abstract

Flexible conductive hydrogel-based electronic skin (E-skin) for simultaneous biotherapeutics and sensing applications is one of the current research directions. In this study, conductive and homogeneous silk fibroin/polyaniline/AgNP complexes (SPAg complexes) were prepared with the assistance of silk fibroin, which greatly optimized the compatibility of PANI with the hydrogel matrix. Then, SPAg was introduced into the covalently crosslinked polymer network to prepare poly(acrylamide--sulfobetaine methacrylate) - SPAg hydrogels (labeled as PSPAg hydrogels). The PSPAg hydrogels exhibit good biocompatibility, excellent mechanical properties, superb adhesive performance, and fantastic sensing capabilities. Being connected to a smartphone a Bluetooth system, the SPAg hydrogel-based E-skin was employed to accurately monitor human movements including vigorous joint movements and subtle facial micro-expressions. Finally, benefiting from the synergistic effect of antimicrobial and exogenous electrical stimulation, through promoting angiogenesis and accelerating collagen production in diabetic wounds, PSPAg E-skin successfully facilitates rapid diabetic wound healing. Therefore, the multifunctional PSPAg hydrogel-based E-skin shows great promise for applications in wearable devices and bioelectronics.

摘要

用于同时进行生物治疗和传感应用的基于柔性导电水凝胶的电子皮肤 (E-skin) 是当前的研究方向之一。在这项研究中,在丝素蛋白的辅助下制备了导电且均匀的丝素蛋白/聚苯胺/AgNP 复合物 (SPAg 复合物),这极大地优化了 PANI 与水凝胶基质的相容性。然后,将 SPAg 引入到共价交联聚合物网络中,制备了聚(丙烯酰胺-磺酸甜菜碱甲基丙烯酰胺)-SPAg 水凝胶 (标记为 PSPAg 水凝胶)。PSPAg 水凝胶表现出良好的生物相容性、优异的机械性能、卓越的粘附性能和出色的传感性能。通过与智能手机蓝牙系统相连,基于 SPAg 水凝胶的 E-skin 被用于准确监测人体运动,包括剧烈的关节运动和微妙的面部微表情。最后,得益于抗菌和外源性电刺激的协同作用,PSPAg E-skin 通过促进糖尿病伤口中的血管生成和加速胶原蛋白生成,成功促进了糖尿病伤口的快速愈合。因此,基于多功能 PSPAg 水凝胶的 E-skin 有望在可穿戴设备和生物电子学中得到应用。

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