National Engineering Research Center for Biomaterials, Sichuan University, Chengdu 610065, Sichuan, China.
Sichuan Academy of Chinese Medicine Science, Chengdu 610041, Sichuan, China.
J Mater Chem B. 2022 Mar 30;10(13):2135-2147. doi: 10.1039/d1tb02850b.
Generally, bacterial infection seriously hinders the wound healing process, so it is crucial to safeguard the wound from severe infection. Besides, multifunctional hydrogel dressings (self-healing, injectable, antibacterial and adaptable) seem to be conducive to meet the needs of wound healing. Here, a double-crosslinked multifunctional hydrogel (COC hydrogel) based on quaternized chitosan, methacrylate anhydride-modified collagen and oxidized dextran was developed. The double-crosslinked network improved the stability of the hydrogel while not destroying the functionality of the Schiff base bond. More importantly, silver ions were rapidly bioreduced to silver nanoparticles (AgNPs) during the formation of the COC hydrogel, which can essentially avoid the dispersion and agglomeration problems. The obtained COC@AgNP hydrogel had good biocompatibility compared with that loaded with silver ions and excellent antibacterial properties compared with that loaded with the same amount of commercial AgNPs. results indicated that the COC@AgNP hydrogel accelerated the healing process of infected full-thickness skin defects through anti-infection, anti-inflammation, stimulating collagen deposition, and promoting the formation of epithelia and blood vessels. Collectively, the COC@AgNP hydrogel has good potential for clinical infected wound dressing applications.
一般来说,细菌感染严重阻碍了伤口愈合过程,因此保护伤口免受严重感染至关重要。此外,多功能水凝胶敷料(自修复、可注射、抗菌和适应性)似乎有助于满足伤口愈合的需求。在这里,开发了一种基于季铵化壳聚糖、丙烯酰基琥珀酸酐改性胶原蛋白和氧化葡聚糖的双交联多功能水凝胶(COC 水凝胶)。双交联网络提高了水凝胶的稳定性,同时不破坏席夫碱键的功能。更重要的是,在 COC 水凝胶的形成过程中,银离子迅速被生物还原为银纳米粒子(AgNPs),这可以从根本上避免分散和团聚问题。与负载银离子的 COC@AgNP 水凝胶相比,其具有良好的生物相容性,与负载相同量商业 AgNPs 的 COC@AgNP 水凝胶相比,具有优异的抗菌性能。结果表明,COC@AgNP 水凝胶通过抗感染、抗炎、刺激胶原沉积以及促进上皮和血管形成,加速了感染性全层皮肤缺损的愈合过程。总之,COC@AgNP 水凝胶在临床感染性伤口敷料应用方面具有良好的应用潜力。