Lu Wei, Chen Hui, Liu Tingting, Hu JiaHao, Zhu LuWen, Tao XiaoHua, Xu XiaoLing, Du YongZhong
Center for Plastic & Reconstructive Surgery, Department of Dermatology, Zhejiang Provincial People's Hospital (Affiliated People's Hospital, Hangzhou Medical College), Hangzhou 310014, PR China.
College of Pharmaceutical Sciences, Zhejiang University, 866 Yuhangtang Road, Hangzhou, Zhejiang 310058, PR China.
Int J Pharm. 2025 Feb 10;670:125120. doi: 10.1016/j.ijpharm.2024.125120. Epub 2025 Jan 2.
Traditional wound care preparations frequently face challenges such as complex care protocols, poor patient compliance, limited skin permeability, lack of aesthetics, and inconvenience, in addition to the risk of bacterial infection. We developed a spray film preparation containing nanocellulose and L-serine modified nanosilver, capable of rapidly forming a transparent film on the skin within minutes of application. The incorporation of nanocellulose imparted protective, moisturizing, and breathable properties to the film, allowing for easy removal after use. Moreover, our innovative application of L-serine as a precursor for synthesizing silver nanoparticles not only overcomed the limitations of current silver nanoparticle synthesis methods but also enhanced antibacterial efficacy by leveraging the inherent antimicrobial properties and bacterial targeting capability of L-serine. Specifically, the addition of nanocellulose to the spray film forming system enhanced air permeability and drug carrying capacity by creating a lightweight porous structure, while also ensuring the antimicrobial and anti-inflammatory efficacy of serine modified silver nanoparticles. Mice treated with spray film formulations containing nanocellulose and silver nanoparticles demonstrated superior wound healing, normalization of keratin thickness, increased hair follicle count, and reduced inflammatory markers. In conclusion, our study developed a spray film that integrated excellent antimicrobial properties with user convenience. This research presented innovative strategies for clinical wound care, antibacterial infection management, and post laser cosmetic treatment, with the potential to substantially enhance wound care in practical application.
传统伤口护理制剂除了存在细菌感染风险外,还常常面临诸多挑战,如护理方案复杂、患者依从性差、皮肤渗透性有限、缺乏美观性以及使用不便等问题。我们研发了一种含有纳米纤维素和L-丝氨酸修饰纳米银的喷雾成膜制剂,在涂抹后几分钟内就能在皮肤上迅速形成一层透明薄膜。纳米纤维素的加入赋予了薄膜保护、保湿和透气性能,使用后便于去除。此外,我们创新性地将L-丝氨酸用作合成银纳米颗粒的前体,不仅克服了当前银纳米颗粒合成方法的局限性,还通过利用L-丝氨酸固有的抗菌性能和细菌靶向能力提高了抗菌效果。具体而言,在喷雾成膜系统中添加纳米纤维素,通过形成轻质多孔结构提高了透气性和载药能力,同时确保了丝氨酸修饰银纳米颗粒的抗菌和抗炎效果。用含有纳米纤维素和银纳米颗粒的喷雾膜制剂处理的小鼠表现出伤口愈合更佳、角质层厚度正常化、毛囊数量增加以及炎症标志物减少。总之,我们的研究开发出了一种兼具优异抗菌性能和使用便利性的喷雾膜。本研究为临床伤口护理、抗菌感染管理和激光后美容治疗提出了创新策略,在实际应用中具有大幅提升伤口护理水平的潜力。