Guo Yumeng, Wang Qian, Sun Guoming, Zheng Ying
School of Stomatology, Capital Medical University, Beijing 100070, China.
Department of Stomatology, Peking Union Medical College Hospital, Peking Union Medical College, Chinese Academy of Medical Sciences, Beijing 100730, China.
Polymers (Basel). 2025 May 15;17(10):1356. doi: 10.3390/polym17101356.
Developing an oral fibrous barrier membrane that prevents bacterial invasion while possessing antibacterial properties and facilitating fluid decompression remains a significant clinical and scientific challenge. In this study, we developed a novel Janus membrane by modifying a polypropylene (PP) fibrous membrane with dopamine and zinc oxide nanoparticles (ZnO-NPs). Fabricated via a simple floating immersion method, this asymmetric bilayer structure consists of a hydrophobic PP layer and a hydrophilic PP/dopamine@30 nm ZnO layer, providing both antibacterial properties and enhanced fluid filtration. The mechanical properties of the PP/ZnO membrane were significantly enhanced, with an increase in the Young's modulus and ultimate tensile strength, indicating improved strength. Antibacterial activity against () demonstrated a significant reduction in biofilm formation on the PP/dopamine@30 nm ZnO surface compared to unmodified PP. Water flux tests confirmed a stable, high filtration rate, with increased permeability under rising pressure. In vivo experiments with miniature pigs confirmed reduced bacterial presence on the sterile side of the membrane. These findings highlight the potential of the membrane for oral exudate filtration, extending filtration time and minimizing infection risks under strict sterility conditions. Further improvements in barrier properties are necessary to optimize its clinical performance.
开发一种口服纤维屏障膜,既能防止细菌入侵,又具有抗菌性能并促进液体减压,仍然是一项重大的临床和科学挑战。在本研究中,我们通过用多巴胺和氧化锌纳米颗粒(ZnO-NPs)修饰聚丙烯(PP)纤维膜,开发了一种新型的Janus膜。通过简单的浮动浸渍法制备,这种不对称双层结构由疏水的PP层和亲水的PP/多巴胺@30 nm ZnO层组成,兼具抗菌性能和增强的液体过滤能力。PP/ZnO膜的机械性能显著增强,杨氏模量和极限拉伸强度增加,表明强度有所提高。对()的抗菌活性表明,与未改性的PP相比,PP/多巴胺@30 nm ZnO表面的生物膜形成显著减少。水通量测试证实了稳定的高过滤率,在压力升高时渗透率增加。用小型猪进行的体内实验证实,膜无菌侧的细菌数量减少。这些发现突出了该膜在口腔渗出液过滤方面的潜力,可延长过滤时间并在严格无菌条件下将感染风险降至最低。为优化其临床性能,有必要进一步改善屏障性能。