Division of Oral Diagnosis and Family Dentistry, National Defense Medical Center, Taipei, Taiwan.
Department of Healthcare Administration, Asia University, Taichung, Taiwan.
J Formos Med Assoc. 2021 Feb;120(2):827-837. doi: 10.1016/j.jfma.2020.09.002. Epub 2020 Sep 23.
BACKGROUND/PURPOSE: Honokiol and magnolol are natural components isolated from Magnolia bark that is used in traditional Chinese and Japanese herbal medicine. These two isomers are used as a component of dietary supplements and cosmetic products. In this study, we investigated the antimicrobial effect of honokiol and magnolol on pathogens causing oral diseases, their mechanism of action in biofilm formation and drug resistance of oral pathogens, and inflammatory regulation in mammalian cells.
We determined the minimum inhibitory concentration and minimum bactericidal concentration of honokiol and magnolol, and their stability at different temperatures and pH. We also evaluated their effect on biofilm formation, antibiotic-resistance gene expression in MRSA, and pro-inflammatory gene expression in mammalian cells.
Honokiol showed better antimicrobial activity than magnolol. Both honokiol and magnolol showed stable bacterial inhibitory activity over a wide range of temperature and pH, reduced biofilm formation, and antibiotic resistance in oral pathogens. The biofilm formation- and antibiotic resistance-related gene expression was consistent with the respective phenotypes. Furthermore, these two isomers repressed the expression of pro-inflammatory genes in RAW264.7 cells.
Our study provides evidence of the potential application of honokiol and magnolol in dental medicine to cure or prevent oral diseases.
背景/目的:厚朴酚和木兰醇是从传统中药和日本草药厚朴树皮中分离出来的天然成分。这两种异构体被用作膳食补充剂和化妆品产品的成分。在这项研究中,我们研究了厚朴酚和木兰醇对引起口腔疾病的病原体的抗菌作用、它们在口腔病原体生物膜形成和耐药性中的作用机制,以及在哺乳动物细胞中的炎症调节作用。
我们确定了厚朴酚和木兰醇的最小抑菌浓度和最小杀菌浓度,以及它们在不同温度和 pH 值下的稳定性。我们还评估了它们对生物膜形成、MRSA 中抗生素耐药基因表达和哺乳动物细胞中促炎基因表达的影响。
厚朴酚的抗菌活性优于木兰醇。厚朴酚和木兰醇在很宽的温度和 pH 范围内均表现出稳定的抑菌活性,可降低口腔病原体的生物膜形成和抗生素耐药性。生物膜形成和抗生素耐药性相关基因表达与各自的表型一致。此外,这两种异构体可抑制 RAW264.7 细胞中促炎基因的表达。
我们的研究为厚朴酚和木兰醇在牙科医学中的潜在应用提供了证据,可用于治疗或预防口腔疾病。