School of Materials Science and Engineering, Hainan University, Haikou, 570228, China.
Adv Healthc Mater. 2024 Nov;13(28):e2401704. doi: 10.1002/adhm.202401704. Epub 2024 Jul 16.
A bio-hydrogel is prepared via a low-cost and time-saving strategy and is studied as a self-powered wound dressing for precision medicine and health monitoring. Promoted by a dual self-catalytic pair composed of Fe and catechol, gelation time is dramatically accelerated to 15 s and the hydrogel can be freely modeled at -18 °C without losing flexibility. As smart wound dressing, the required properties such as self-healing, self-adhesion, antibacterial, and sensing stability, are integrated into one hydrogel. TA@CNC offers abundant hydrogen bond and metal-ligand coordination which facilitate the hydrogel with a self-healing efficiency of 91.6%. Owing to the catechol in TA@CNC, hydrogel can adhere to multiple substrates including skin, and show good antibacterial activity. Inspired by a fruit battery, a self-powered wound dressing is fabricated, which exhibits excellent correlation and efficiency in real-time monitoring of body activity and drug release. In vivo experiments prove that efficient drug release of hydrogel dressing significantly accelerate wound healing. Additionally, the dressing exhibits excellent biocompatibility and has no negative impacts on organs. Herein, a smart wound dressing that is different from the traditional way is proposed. As a self-powered device, it can be integrated with wireless devices and is expected to participate in promising applications.
一种生物水凝胶通过一种低成本和省时的策略制备,并被研究作为用于精准医疗和健康监测的自供电伤口敷料。由铁和儿茶酚组成的双自催化对促进凝胶时间显著加速至 15s,并且水凝胶可以在-18°C 下自由成型而不会失去柔韧性。作为智能伤口敷料,将自修复、自粘附、抗菌和传感稳定性等所需性能集成到一个水凝胶中。TA@CNC 提供丰富的氢键和金属-配体配位,使水凝胶具有 91.6%的自修复效率。由于 TA@CNC 中的儿茶酚,水凝胶可以粘附到包括皮肤在内的多种基质上,并表现出良好的抗菌活性。受水果电池的启发,制造了一种自供电伤口敷料,其在实时监测身体活动和药物释放方面表现出优异的相关性和效率。体内实验证明,水凝胶敷料的高效药物释放可显著加速伤口愈合。此外,该敷料表现出优异的生物相容性,对器官没有负面影响。本文提出了一种不同于传统方式的智能伤口敷料。作为一种自供电装置,它可以与无线设备集成,并有望参与有前途的应用。