Huang Rong, Bian Yongqian, Wang Wenxuan, Xu Lirong, Zhang Hao, Zhou Haowei, Du Jincheng, Li Jiaqi, Zhang Yuheng, Li Xueyong, Li Jing
Department of Burn and Plastic Surgery, Second Affiliated Hospital, Air Force Medical University, Xi'an 710038, China.
Department of Burn and Plastic Surgery, Second Affiliated Hospital, Air Force Medical University, Xi'an 710038, China.
Carbohydr Polym. 2025 Feb 1;349(Pt A):122961. doi: 10.1016/j.carbpol.2024.122961. Epub 2024 Nov 13.
Bacterial infections and severe bleeding continue to pose significant challenges in wound repair. There is an urgent need for innovative, nature-inspired hydrogel dressings with antibacterial and hemostatic properties. A Ge-β-CD-CS-OREC conjugate hydrogel was developed by grafting β-CD and CS-OREC nanocomposites into a Ge matrix using EDC/NHS crosslinking, as confirmed by FT-IR and EDX analyses. Compared to single Ge-β-CD cross-linked hydrogels, the addition of CS-OREC enhanced the hydrogel's properties, including increased pore size (60 ± 14 μm), improved wettability (WCA = 28.82 ± 0.6°), enhanced tensile strength (41.3 ± 3.56 KPa), and strong tissue adhesion. Furthermore, this hydrogel demonstrated excellent cytocompatibility when co-cultured with keratinocytes (Kcs) and vascular endothelial cells (VECs). The incorporation of CS chains into OREC interlayers allowed the hydrogel to specifically target bacteria and increase membrane permeability in Pseudomonas aeruginosa (PA), Klebsiella pneumoniae (KP), and Staphylococcus aureus (SA), effectively reducing the bacterial load in infected wounds by 50.24-73.92 % compared to controls in vivo. Further, the hydrogel exhibited superior hemostatic efficiency (78 ± 10 s) over commercial gauze and other gels by enhancing platelet activation and coagulation factor secretion. The hydrogel accelerated tissue regeneration by promoting epithelial maturation and blood vessel regeneration, indicating its clinical potential as promising wound dressing.
细菌感染和严重出血在伤口修复中仍然构成重大挑战。迫切需要具有抗菌和止血特性的创新型、受自然启发的水凝胶敷料。通过使用EDC/NHS交联将β-环糊精(β-CD)和壳聚糖-氧化再生纤维素纳米复合材料(CS-OREC)接枝到明胶(Ge)基质中,制备了一种Ge-β-CD-CS-OREC共轭水凝胶,傅里叶变换红外光谱(FT-IR)和能谱分析(EDX)证实了这一点。与单一的Ge-β-CD交联水凝胶相比,添加CS-OREC增强了水凝胶的性能,包括增大的孔径(60±14μm)、改善的润湿性(水接触角WCA=28.82±0.6°)、增强的拉伸强度(41.3±3.56KPa)和较强的组织粘附性。此外,当与角质形成细胞(Kcs)和血管内皮细胞(VECs)共培养时,这种水凝胶表现出优异的细胞相容性。将CS链掺入OREC夹层中使水凝胶能够特异性靶向细菌并增加铜绿假单胞菌(PA)、肺炎克雷伯菌(KP)和金黄色葡萄球菌(SA)的膜通透性,与体内对照相比,有效降低感染伤口中的细菌载量50.24%-73.92%。此外,通过增强血小板活化和凝血因子分泌,该水凝胶表现出优于商业纱布和其他凝胶的止血效率(78±10秒)。该水凝胶通过促进上皮成熟和血管再生加速组织再生,表明其作为有前景的伤口敷料的临床潜力。