Department of Rheumatology and Dermatology, The Second Affiliated Hospital of Army Medical University, Chongqing, People's Republic of China.
College of Bioengineering, University of Chongqing, Chongqing, People's Republic of China.
Int J Nanomedicine. 2024 Oct 15;19:10369-10385. doi: 10.2147/IJN.S479637. eCollection 2024.
Wound healing is a complex physiological process that can be roughly divided into four stages: hemostasis, inflammation, proliferation, and remodeling. Conventional wound dressings often fail to meet the diverse needs of these healing stages due to their limited functionality. Cryogels, however, possess several attractive properties, such as large, interconnected pores, good mechanical strength, and ease of modification, making them suitable for developing advanced dressings with multiple functions. In this study, we developed a multifunctional cryogel dressing, with biocompatible polysaccharides as the main component, designed to provide a breathable, moist, and antibacterial microenvironment for chronic infected wounds, thereby promoting wound healing.
Recombinant keratin 31 (RK31) was combined with chitosan (CS) to produce a CS/RK31 cryogel, referred to as CK. Gallic acid-reduced silver nanoparticles (GA/Ag NPs) were incorporated as the active antibacterial component to create the CS/K31@GA/Ag cryogel, known as CKGA. The cryogel was characterized using scanning electron microscopy (SEM) and a universal testing machine, and its biocompatibility was assessed in vitro. The dynamic hemostatic performance of the cryogel was evaluated with a rat tail amputation bleeding model. Additionally, the antibacterial effects of the cryogel against and were tested using agar diffusion assays and turbidimetry. The antioxidant capacity of the CKGA cryogel was also measured in vitro. Finally, the cryogel's ability to promote wound healing was tested in an SD rat model of infected wounds.
Characterization results showed that the CKGA cryogel features an interpenetrating porous network structure and exhibits excellent mechanical properties, with a swelling rate of up to 1800%. Both in vitro and in vivo experiments confirmed that the cryogel has good biocompatibility, effectively absorbs exudates, and rapidly stops bleeding. The addition of GA/Ag NPs provided significant antibacterial effects, achieving an inhibition rate of over 99.9% against both and . Furthermore, CKGA cryogels demonstrated a strong scavenging capacity for ROS in a dose-dependent manner. Studies using the SD rat infected wound model showed that the cryogel effectively inhibited bacterial proliferation on wound surfaces, reduced local tissue inflammation, and promoted the healing of infected wounds.
The multifunctional cryogel, with its rapid hemostatic, antibacterial, and antioxidant properties, as well as its ability to promote cell proliferation, could be widely used as a wound dressing for the healing of bacterial infections.
伤口愈合是一个复杂的生理过程,大致可分为四个阶段:止血、炎症、增殖和重塑。由于功能有限,传统的伤口敷料往往无法满足这些愈合阶段的多样化需求。然而,水凝胶具有大的、相互连接的孔、良好的机械强度和易于修饰等优点,使其成为开发具有多种功能的先进敷料的理想选择。在本研究中,我们开发了一种多功能水凝胶敷料,以生物相容性多糖为主要成分,旨在为慢性感染伤口提供透气、湿润和抗菌的微环境,从而促进伤口愈合。
将重组角蛋白 31(RK31)与壳聚糖(CS)结合制成 CS/RK31 水凝胶,称为 CK。将还原型没食子酸银纳米粒子(GA/Ag NPs)作为活性抗菌成分加入其中,制备 CS/K31@GA/Ag 水凝胶,称为 CKGA。通过扫描电子显微镜(SEM)和万能试验机对水凝胶进行表征,并在体外评估其生物相容性。利用大鼠尾切断出血模型评估水凝胶的动态止血性能。此外,通过琼脂扩散试验和比浊法测试水凝胶对 和 的抗菌效果。体外测量 CKGA 水凝胶的抗氧化能力。最后,在 SD 大鼠感染伤口模型中测试水凝胶促进伤口愈合的能力。
表征结果表明,CKGA 水凝胶具有互穿多孔网络结构,表现出优异的机械性能,溶胀率高达 1800%。体内外实验均证实,该水凝胶具有良好的生物相容性,能有效吸收渗出物,并迅速止血。GA/Ag NPs 的加入赋予了水凝胶显著的抗菌作用,对 和 均达到了超过 99.9%的抑制率。此外,CKGA 水凝胶对 ROS 具有很强的清除能力,呈剂量依赖性。使用 SD 大鼠感染伤口模型的研究表明,水凝胶能有效抑制伤口表面细菌的增殖,减轻局部组织炎症,并促进感染伤口的愈合。
多功能水凝胶具有快速止血、抗菌、抗氧化和促进细胞增殖的特性,可广泛用作治疗细菌感染的伤口敷料。