Kashi Milad, Varseh Mahdieh, Hariri Yasaman, Chegini Zahra, Shariati Aref
Student research Committee, Arak University of Medical Sciences, Arak, Iran.
Student Research Committee, Khomein University of Medical Sciences, Khomein, Iran.
Front Pharmacol. 2025 Apr 1;16:1548117. doi: 10.3389/fphar.2025.1548117. eCollection 2025.
is recognized as one of the leading causes of dental caries, and biofilm formation by this bacterium plays a key role in dental plaque development and caries progression. Given the increasing resistance of bacteria to antibiotics and the adverse effects of some synthetic antimicrobials, the search for natural alternatives has received increasing attention. The recently published studies have demonstrated that natural compounds (NCs) such as curcumin, cinnamaldehyde, eugenol, thymol, carvacrol, epigallocatechin gallate, farnesol, catechin, inulin, menthol, apigenin, myricetin, oleanolic acid, and resveratrol, have notable antimicrobial properties and can effectively inhibit the growth of . NCs can disrupt bacterial membrane integrity, leading to cell death, and possess the capability to inhibit acid production, which is a key factor in caries development. NCs can also interfere with bacterial adhesion to surfaces, including teeth. The attachment inhibition is achieved by decreasing the expression of adhesion factors such as s, , , and . NCs can disrupt bacterial metabolism, inhibit biofilm formation, disperse existing biofilm, and interfere with quorum sensing and two-component signal transduction systems. Moreover, novel drug delivery platforms were used to enhance the bioavailability and stability of NCs. Studies have also indicated that NCs exhibit significant efficacy in combination therapies. Notably, curcumin has shown promising results in photodynamic therapy against . The current review article analyzes the mechanisms of action of various NCs against and investigates their potential as alternative or complementary therapeutic options for managing this bacterium and dental caries.
被认为是龋齿的主要病因之一,这种细菌形成生物膜在牙菌斑发展和龋齿进展中起关键作用。鉴于细菌对抗生素的耐药性不断增加以及一些合成抗菌剂的不良反应,寻找天然替代品受到了越来越多的关注。最近发表的研究表明,姜黄素、肉桂醛、丁香酚、百里香酚、香芹酚、表没食子儿茶素没食子酸酯、法尼醇、儿茶素、菊粉、薄荷醇、芹菜素、杨梅素、齐墩果酸和白藜芦醇等天然化合物具有显著的抗菌特性,能够有效抑制……的生长。天然化合物可破坏细菌膜的完整性,导致细胞死亡,并具有抑制酸产生的能力,而酸产生是龋齿发展的关键因素。天然化合物还可干扰细菌对包括牙齿在内的表面的黏附。通过降低s、……等黏附因子的表达来实现黏附抑制。天然化合物可扰乱细菌代谢、抑制生物膜形成、分散现有的生物膜,并干扰群体感应和双组分信号转导系统。此外,新型药物递送平台被用于提高天然化合物的生物利用度和稳定性。研究还表明,天然化合物在联合治疗中显示出显著疗效。值得注意的是,姜黄素在针对……的光动力疗法中已显示出有前景的结果。当前的综述文章分析了各种天然化合物针对……的作用机制,并研究了它们作为管理这种细菌和龋齿的替代或补充治疗选择的潜力。