Shen Zihao, Ma Ningyi, Xu Juan, Wang Ting
Aulin College, Northeast Forestry University, Harbin, Heilongjiang, 150000, China.
NHC Key Laboratory of Reproductive Health Engineering Technology Research, Haidian District, No. 12, Da Hui Si Road, Beijing, 100081, China.
Mater Today Bio. 2024 Mar 29;26:101039. doi: 10.1016/j.mtbio.2024.101039. eCollection 2024 Jun.
In order to improve the wound repair environment, this research has successfully developed a new multifunctional hydrogel dressing, which has strong adaptability and can accelerate wound healing. Pioneering the development of metal-ion-controlled hydrogel dressings, this research integrates dopamine and imidazole double crosslinked networks with metal-ion coordination. The resulting hydrogel dressing exhibits a notable antibacterial effect and exceptional mechanical properties, withstanding pressures of up to 12 kPa, tensions of 25 kPa, and maintaining skin adhesion at 6 kPa. Furthermore, the dressing can self-heal within only 7-8 s post-injection. Impressively, the hydrogel achieves complete biodegradation within a short timeframe (37 h). Notably, the use of various metal ions facilitates painless peeling during the degradation period, perfectly aligning with the requirements of an ideal wound dressing. This study has made significant progress in the fields of trauma repair and materials, providing strong solutions for dealing with harsh post-traumatic environments.
为改善伤口修复环境,本研究成功开发出一种新型多功能水凝胶敷料,其适应性强,能加速伤口愈合。本研究率先开发金属离子可控水凝胶敷料,将多巴胺和咪唑双交联网络与金属离子配位相结合。所得水凝胶敷料具有显著的抗菌效果和出色的力学性能,可承受高达12 kPa的压力、25 kPa的拉力,并在6 kPa下保持与皮肤的粘附力。此外,该敷料在注射后仅7 - 8秒内即可自我修复。令人印象深刻的是,水凝胶能在短时间内(37小时)实现完全生物降解。值得注意的是,使用各种金属离子有助于在降解期间实现无痛剥离,完全符合理想伤口敷料的要求。本研究在创伤修复和材料领域取得了重大进展,为应对恶劣的创伤后环境提供了有力解决方案。