Sun Zhiwei, Hu Keqiang, Wang Ting, Chen Xiangru, Meng Na, Peng Ximing, Ma Liya, Tian Di, Xiong Shaotang, Zhou Chuchao, Yang Yanqing
Department of Plastic Surgery, Tongren Hospital of Wuhan University (Wuhan Third Hospital), Wuhan 430060, China.
Department of Medical Ultrasound, Tongji Hospital of Tongji Medical College of Huazhong University of Science and Technology, Wuhan, China.
Int J Biol Macromol. 2024 May;266(Pt 2):131277. doi: 10.1016/j.ijbiomac.2024.131277. Epub 2024 Mar 31.
Bacteria-infected wound healing has attracted widespread attention in biomedical engineering. Wound dressing is a potential strategy for repairing infectious wounds. However, the development of wound dressing with appropriate physiochemical, antibacterial, and hemostatic properties, remains challenging. Hence, there is a motivation to develop new synthetic dressings to improve bacteria-infected wound healing. Here, we fabricate a biocompatible sponge through the covalent crosslinking of collagen (Col), quaternized chitosan (QCS), and graphene oxide (GO). The resulting Col-QCS-GO sponge shows an elastic modulus of 1.93-fold higher than Col sponge due to enhanced crosslinking degree by GO incorporation. Moreover, the fabricated Col-QCS-GO sponge shows favorable porosity (84.30 ± 3.12 %), water absorption / retention (2658.0 ± 113.4 % / 1114.0 ± 65.7 %), and hemostasis capacities (blood loss <50.0 mg). Furthermore, the antibacterial property of the Col-QCS-GO sponge under near-infrared (NIR) irradiation is significantly enhanced (the inhibition rates are 99.9 % for S. aureus and 99.9 % for E. coli) due to the inherent antibacterial properties of QCS and the photothermal antibacterial capabilities of GO. Finally, the Col-QCS-GO+NIR sponge exhibits the lowest percentage of wound area (9.05 ± 1.42 %) at day 14 compared to the control group (31.61 ± 1.76 %). This study provides new insights for developing innovative sponges for bacteria-infected wound healing.
细菌感染伤口的愈合在生物医学工程领域引起了广泛关注。伤口敷料是修复感染伤口的一种潜在策略。然而,开发具有适当物理化学、抗菌和止血性能的伤口敷料仍然具有挑战性。因此,人们有动力开发新型合成敷料以改善细菌感染伤口的愈合。在此,我们通过胶原蛋白(Col)、季铵化壳聚糖(QCS)和氧化石墨烯(GO)的共价交联制备了一种生物相容性海绵。由于引入GO提高了交联度,所得的Col-QCS-GO海绵的弹性模量比Col海绵高1.93倍。此外,制备的Col-QCS-GO海绵具有良好的孔隙率(84.30 ± 3.12%)、吸水/保水率(2658.0 ± 113.4% / 1114.0 ± 65.7%)和止血能力(失血量<50.0 mg)。此外,由于QCS的固有抗菌性能和GO的光热抗菌能力,Col-QCS-GO海绵在近红外(NIR)照射下 的抗菌性能显著增强(对金黄色葡萄球菌的抑制率为99.9%,对大肠杆菌的抑制率为99.9%)。最后,与对照组(31.61 ± 1.76%)相比,Col-QCS-GO+NIR海绵在第14天时伤口面积百分比最低(9.05 ± 1.42%)。本研究为开发用于细菌感染伤口愈合的创新海绵提供了新的见解。