Wu Zibei, Zhang Xufeng, Wang Lili, Sui Jinlei, Yu Mingqi, Bao Bingzhangke, Qian Jianing, Yi Guohui, Ma Yinzheng, He Xiaowen
School of Pharmacy, Hainan Medical University, Haikou, China.
Department of Stomatology, The First Affiliated Hospital of Hainan Medical University, Haikou, China.
Front Microbiol. 2025 Aug 29;16:1612681. doi: 10.3389/fmicb.2025.1612681. eCollection 2025.
is one of the most significant pathogens leading to dental caries by producing highly cariogenic biofilms within the oral cavity. However, the increasing antimicrobial resistance brings great difficulties to the prevention and treatment of dental caries. Therefore, it is very important to develop new and effective antimicrobial agents from natural sources. (Lour.) Skeels, a plant commonly cultivated in Southern China, is rich in various active constituents. In this study, the main constituents of the essential oils extracted from leaves (EOL), seeds (EOS), peels (EOP) were precisely analyzed by gas chromatography-mass spectrometry. The antimicrobial and anti-biofilm activities of EOL, EOS, and EOP, along with their main chemical constituents, against were comprehensively evaluated. The primary constituent in EOL was β-caryophyllene, with a content of 112.29 mg/mL. EOS was found to be abundant in sabinene and 4-terpineol, with constituents of 147.21 mg/mL and 54.36 mg/mL, respectively. In EOP, the most predominant constituent was β-phellandrene, with a content of 173.95 mg/mL. The minimum inhibitory concentrations of EOL, EOS, and EOP were 0.12, 2.00, and 1.00 mg/mL, respectively. The minimum concentrations of inhibiting at least 90% biofilm formation of EOL, EOS, and EOP was 0.12 mg/mL, 2.00, and 2.00 mg/mL, respectively. Intriguingly, the antimicrobial and anti-biofilm efficacies of the main constituents were significantly lower than those of the essential oils. By observing the dynamic changes of the biofilm formation of treated with essential oils, it was found that the process of biofilm formation was greatly delayed. In some cases, there was even no biofilm formation. The results of real-time quantitative PCR indicated that the expression levels of , , , , and genes were down-regulated after treatment with the essential oils. This study reinforces the potential of as a promising source for developing new antimicrobial and anti-biofilm agents. They could inhibit the proliferation and virulence of , thereby contributing to the control of dental caries.
是通过在口腔内产生高度致龋生物膜导致龋齿的最重要病原体之一。然而,日益增加的抗菌药物耐药性给龋齿的预防和治疗带来了巨大困难。因此,从天然来源开发新的有效抗菌剂非常重要。(Lour.)Skeels是中国南方常见种植的一种植物,富含各种活性成分。在本研究中,通过气相色谱 - 质谱法对从叶子(EOL)、种子(EOS)、果皮(EOP)中提取的挥发油的主要成分进行了精确分析。全面评估了EOL、EOS和EOP及其主要化学成分对的抗菌和抗生物膜活性。EOL中的主要成分是β - 石竹烯,含量为112.29mg/mL。发现EOS富含桧烯和4 - 萜品醇,含量分别为147.21mg/mL和54.36mg/mL。在EOP中,最主要的成分是β - 水芹烯,含量为173.95mg/mL。EOL、EOS和EOP的最低抑菌浓度分别为0.12、2.00和1.00mg/mL。EOL、EOS和EOP抑制至少90%生物膜形成的最低浓度分别为0.12mg/mL、2.00和2.00mg/mL。有趣的是,主要成分的抗菌和抗生物膜功效明显低于挥发油。通过观察用挥发油处理后的生物膜形成动态变化,发现生物膜形成过程被大大延迟。在某些情况下,甚至没有生物膜形成。实时定量PCR结果表明,用挥发油处理后,、、、和基因的表达水平下调。本研究强化了作为开发新型抗菌和抗生物膜剂的有前景来源的潜力。它们可以抑制的增殖和毒力,从而有助于控制龋齿。