丁香酚
毒性
体内
微生物学
活力测定
生物膜
合子
肉汤微量稀释
白色念珠菌
化学
最小抑制浓度
生物
药理学
体外
抗菌剂
生物化学
细菌
植物
遗传学
生物技术
有机化学
作者
Priscilla Guimarães Silva Vasconcelos,Gabriel Flores Abuna,Joanda Paolla Raimundo e Silva,Josean Fechine Tavares,Edja Maria Melo de Brito Costa,Ramiro Mendonça Murata
出处
期刊:PLOS ONE
[Public Library of Science]
日期:2024-06-18
卷期号:19 (6): e0305405-e0305405
标识
DOI:10.1371/journal.pone.0305405
摘要
Syzigium aromaticum essential oil (EO), eugenol, and β-caryophyllene were evaluated regarding antifungal, antibiofilm, and in vitro toxicity. Additionally, in vivo toxicity of EO was observed. Anti- Candida activity was assessed through broth microdilution assay for all compounds. Time-kill assay (0, 1, 10, 30 min, 1, 2, and 4 h) was used to determine the influence of EO and eugenol on Candida Growth kinetics. Thereafter, both compounds were evaluated regarding their capacity to act on a biofilm formation and on mature biofilm, based on CFU/ml/g of dry weight. Cell Titer Blue Viability Assay was used for in vitro cytotoxicity, using oral epithelial cells (TR146) and human monocytes (THP-1). Lastly, Galleria mellonella model defined the EO in vivo acute toxicity. All compounds, except β-cariofilene (MIC > 8000 μg/ml), presented antifungal activity against Candida strains (MIC 500–1000 μg/ml). The growth kinetics of Candida was affected by the EO (5xMIC 30 min onward; 10xMIC 10 min onward) and eugenol (5xMIC 10 min onward; 10xMIC 1 min onward). Fungal viability was also affected by 5xMIC and 10xMIC of both compounds during biofilm formation and upon mature biofilms. LD 50 was defined for TR146 and THP1 cells at, respectively, 59.37 and 79.54 μg/ml for the EO and 55.35 and 84.16 μg/ml for eugenol. No sign of toxicity was seen in vivo up to 10mg/ml (20 x MIC) for the EO. S . aromaticum and eugenol presented antifungal and antibiofilm activity, with action on cell growth kinetics. In vivo acute toxicity showed a safe parameter for the EO up to 10 mg/ml.
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