Department of Health Science, Graduate School of Gachon University, Incheon, Republic of Korea.
Department of Dental Hygiene, College of Health Science, Gachon University, 191 Hambakmoero Yeonsu-gu, Incheon, 21936, Republic of Korea.
Sci Rep. 2021 Mar 15;11(1):5911. doi: 10.1038/s41598-021-85375-3.
Cinnamon essential oil (CEO) has antibacterial properties, but its ability to suppress the formation of multi-species oral biofilms has not been fully elucidated. This study evaluated the antibacterial and antibiofilm activities of cinnamon essential oil nanoemulsion (CEON) against oral biofilms formed using a microcosm biofilm model. The biofilms were formed on bovine enamel specimens over a 7-day period, during which all specimens were treated with one of three solutions: 5% CEON (n = 35), 0.5% cocamidopropyl betaine (n = 35), or 0.12% chlorhexidine gluconate (CHX; n = 35). Antibacterial and antibiofilm activities were determined by the red/green ratios (R/G values) of 7-day-old mature biofilms photographed with quantitative light-induced fluorescence-digital, the number of aciduric bacterial colony-forming units (CFUs) within each biofilm, and the absorbance of bacterial suspensions. One-way and repeated-measures analysis of variance were performed to compare differences among the three solutions. R/G values were lowest in the 0.12% CHX group, but not significantly differ from the 5% CEON group. The number of CFUs and absorbance were lowest in the 5% CEON group. This study showed that nanoemulsified CEO inhibited the maturation of multi-species oral biofilms and the growth of oral microorganisms in biofilms, including aciduric bacteria that cause dental caries.
肉桂精油(CEO)具有抗菌特性,但它抑制多物种口腔生物膜形成的能力尚未完全阐明。本研究采用微宇宙生物膜模型评估了肉桂精油纳米乳液(CEON)对口腔生物膜的抗菌和抗生物膜活性。生物膜在牛牙釉质标本上形成 7 天,在此期间,所有标本均用三种溶液之一处理:5% CEON(n = 35)、0.5%椰油酰胺丙基甜菜碱(n = 35)或 0.12%葡萄糖酸氯己定(CHX;n = 35)。通过定量光诱导荧光数字化拍摄的 7 天成熟生物膜的红/绿比值(R/G 值)、每个生物膜内耐酸细菌的菌落形成单位(CFU)数量以及细菌悬浮液的吸光度来确定抗菌和抗生物膜活性。采用单向和重复测量方差分析比较三种溶液之间的差异。0.12% CHX 组的 R/G 值最低,但与 5% CEON 组无显著差异。CFU 数量和吸光度最低的是 5% CEON 组。本研究表明,纳米化 CEO 抑制了多种口腔生物膜的成熟和生物膜中口腔微生物的生长,包括导致龋齿的耐酸细菌。