School of Food and Engineering, Shaanxi University of Science and Technology, Xi'an, China.
Zhejiang Jiuzhou Pharmaceutical Co, Taizhou, China.
J Biomater Sci Polym Ed. 2024 Dec;35(18):2767-2789. doi: 10.1080/09205063.2024.2389689. Epub 2024 Aug 20.
Conventional wound dressings used in trauma treatment have a single function and insufficient adaptability to the wound environment, making it difficult to meet the complex demands of the healing process. Stimuli-responsive hydrogels can respond specifically to the particular environment of the wound area and realize on-demand responsive release by loading active substances, which can effectively promote wound healing. In this paper, BC/PAA-pH responsive hydrogels (BPPRHs) were prepared by graft copolymerization of acrylic acid (AA) to the end of the molecular chain of bacterial cellulose (BC) network structure. Antibacterial pH-responsive 'smart' dressings were prepared by loading curcumin (Cur) onto the hydrogels. Surface morphology, chemical groups, crystallinity, rheological, and mechanical properties of BPPRHs were analyzed by different characterization methods. The drug release behavior under different physiological conditions and bacteriostatic properties of BPPRH-Cur dressings were also investigated. The results of structural characterization and performance studies show that the hydrogel has a three-dimensional mesh structure and can respond to wound pH in a 'smart' drug release capacity. The drug release behavior of the BPPRH-Cur dressings under different environmental conditions conformed to the logistic and Weibull kinetic models. BPPRH-Cur displayed good antimicrobial activity against common pathogens of wound infections such as and by destroying the cell membrane and lysing the bacterial cells. This study lays the foundation for the development of new pharmaceutical dressings with positive health, economic and social benefits.
传统创伤治疗中使用的伤口敷料具有单一功能,对伤口环境的适应性不足,难以满足愈合过程的复杂需求。响应性水凝胶可以特异性地响应伤口区域的特定环境,并通过装载活性物质实现按需响应释放,从而有效促进伤口愈合。本文通过将丙烯酸(AA)接枝到细菌纤维素(BC)网络结构分子链的末端,制备了 BC/PAA-pH 响应水凝胶(BPPRHs)。通过将姜黄素(Cur)负载到水凝胶上,制备了具有抗菌 pH 响应的“智能”敷料。通过不同的表征方法分析了 BPPRHs 的表面形貌、化学基团、结晶度、流变和力学性能。还研究了 BPPRH-Cur 敷料在不同生理条件下的药物释放行为和抑菌性能。结构表征和性能研究结果表明,该水凝胶具有三维网状结构,可以以“智能”的药物释放能力响应伤口 pH 值。BPPRH-Cur 敷料在不同环境条件下的药物释放行为符合逻辑斯蒂和 Weibull 动力学模型。BPPRH-Cur 通过破坏细胞膜和裂解细菌细胞,对 和 等常见伤口感染病原体表现出良好的抗菌活性。本研究为开发具有积极健康、经济和社会效益的新型药用敷料奠定了基础。