Yoshihara Kumiko, Kameyama Takeru, Nagaoka Noriyuki, Maruo Yukinori, Yoshida Yasuhiro, Van Meerbeek Bart, Okihara Takumi
National Institute of Advanced Industrial Science and Technology (AIST), Health and Medical Research Institute, Takamatsu 761-0395, Japan.
Department of Pathology & Experimental Medicine, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University, Okayama 700-8558, Japan.
Pharmaceutics. 2025 Jul 11;17(7):902. doi: 10.3390/pharmaceutics17070902.
Denture hygiene is essential for the prevention of oral candidiasis, a condition frequently associated with Candida albicans colonization on denture surfaces. Cetylpyridinium chloride (CPC)-loaded montmorillonite (CPC-Mont) has demonstrated antimicrobial efficacy in tissue conditioners and demonstrates potential for use in antimicrobial coatings. In this study, we aimed to develop and characterize CPC-Mont-containing coating films for dentures, focusing on their physicochemical behaviors and antifungal efficacies. CPC was intercalated into sodium-type montmorillonite to prepare CPC-Mont; thereafter, films containing CPC-Mont were fabricated using emulsions of different polymer types (nonionic, cationic, and anionic). CPC loading, release, and recharging behaviors were assessed at various temperatures, and activation energies were calculated using Arrhenius plots. Antimicrobial efficacy against Candida albicans was evaluated for each film using standard microbial assays. X-ray diffraction analysis confirmed the expansion of montmorillonite interlayer spacing by approximately 3 nm upon CPC loading. CPC-Mont showed temperature-dependent release and recharging behavior, with higher temperatures enhancing its performance. The activation energy for CPC release was 38 kJ/mol, while that for recharging was 26 kJ/mol. Nonionic emulsions supported uniform CPC-Mont dispersion and successful film formation, while cationic and anionic emulsions did not. CPC-Mont-containing coatings maintained antimicrobial activity against Candida albicans on dentures. CPC-Mont can be effectively incorporated into nonionic emulsion-based films to create antimicrobial coatings for denture applications. The films exhibited temperature-responsive, reversible CPC release and recharging behaviors, while maintaining antifungal efficacy, findings which suggest the potential utility of CPC-Mont-containing films as a practical strategy to prevent denture-related candidiasis.
义齿卫生对于预防口腔念珠菌病至关重要,这种病症常与义齿表面白色念珠菌定植有关。负载西吡氯铵(CPC)的蒙脱石(CPC-Mont)已在组织调理剂中显示出抗菌功效,并展现出用于抗菌涂层的潜力。在本研究中,我们旨在开发并表征用于义齿的含CPC-Mont的涂膜,重点关注其物理化学行为和抗真菌功效。将CPC插层到钠型蒙脱石中制备CPC-Mont;此后,使用不同聚合物类型(非离子型、阳离子型和阴离子型)的乳液制备含CPC-Mont的薄膜。在不同温度下评估CPC的负载、释放和再充电行为,并使用阿伦尼乌斯图计算活化能。使用标准微生物检测方法评估每种薄膜对白色念珠菌的抗菌功效。X射线衍射分析证实,负载CPC后蒙脱石层间距扩大了约3nm。CPC-Mont表现出温度依赖性的释放和再充电行为,较高温度可增强其性能。CPC释放的活化能为38kJ/mol,而再充电的活化能为26kJ/mol。非离子乳液支持CPC-Mont均匀分散并成功成膜,而阳离子和阴离子乳液则不行。含CPC-Mont的涂层对义齿上的白色念珠菌保持抗菌活性。CPC-Mont可有效掺入基于非离子乳液的薄膜中,以制备用于义齿的抗菌涂层。这些薄膜表现出温度响应性、可逆的CPC释放和再充电行为,同时保持抗真菌功效,这些发现表明含CPC-Mont的薄膜作为预防义齿相关念珠菌病的实用策略具有潜在用途。