Duan Xiaofeng, Xu Yongde, Zhang Zhifa, Ma Xinbo, Wang Cui, Ma Wenjing, Jia Fan, Pan Xiaoying, Liu Yang, Zhao Yantao, Li Qihong, Liu Zhiqiang, Yang Yong
Department of Urology, The Third Affiliated Hospital of Jinzhou Medical University, Jinzhou, Liaoning, 121000, China.
Department of Urology, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China.
Mater Today Bio. 2024 May 11;26:101089. doi: 10.1016/j.mtbio.2024.101089. eCollection 2024 Jun.
Catheter-associated urinary tract infection (CAUTI) is a common clinical problem, especially during long-term catheterization, causing additional pain to patients. The development of novel antimicrobial coatings is needed to prolong the service life of catheters and reduce the incidence of CAUTIs. Herein, we designed an antimicrobial catheter coated with a piezoelectric zinc oxide nanoparticles (ZnO NPs)-incorporated polyvinylidene difluoride-hexafluoropropylene (ZnO-PVDF-HFP) membrane. ZnO-PVDF-HFP could be stably coated onto silicone catheters simply by a one-step solution film-forming method, very convenient for industrial production. , it was demonstrated that ZnO-PVDF-HFP coating could significantly inhibit bacterial growth and the formation of bacterial biofilm under ultrasound-mediated mechanical stimulation even after 4 weeks. Importantly, the on and off of antimicrobial activity as well as the strenth of antibacterial property could be controlled in an adaptive manner via ultrasound. In a rabbit model, the ZnO-PVDF-HFP-coated catheter significantly reduced the incidence CAUTIs compared with clinically-commonly used catheters under assistance of ultrasonication, and no side effect was detected. Collectively, the study provided a novel antibacterial catheter to prevent the occurrence of CAUTIs, whose antibacterial activity could be controlled in on-demand manner, adaptive to infection situation and promising in clinical application.
导尿管相关尿路感染(CAUTI)是一个常见的临床问题,尤其是在长期留置导尿管期间,会给患者带来额外的痛苦。需要开发新型抗菌涂层来延长导尿管的使用寿命并降低CAUTI的发生率。在此,我们设计了一种涂有掺入压电氧化锌纳米颗粒(ZnO NPs)的聚偏二氟乙烯-六氟丙烯(ZnO-PVDF-HFP)膜的抗菌导尿管。ZnO-PVDF-HFP可以通过一步溶液成膜法稳定地涂覆在硅胶导尿管上,非常便于工业化生产。结果表明,即使在4周后,ZnO-PVDF-HFP涂层在超声介导的机械刺激下仍能显著抑制细菌生长和细菌生物膜的形成。重要的是,抗菌活性的开启和关闭以及抗菌性能的强度可以通过超声以自适应的方式进行控制。在兔模型中,与临床常用导尿管相比,在超声辅助下,涂有ZnO-PVDF-HFP的导尿管显著降低了CAUTI的发生率,且未检测到副作用。总的来说,该研究提供了一种新型抗菌导尿管来预防CAUTI的发生,其抗菌活性可以按需控制,适应感染情况,在临床应用中具有前景。