Eucalyptol inhibits biofilm formation of Streptococcus pyogenes and its mediated virulence factors

生物膜 微生物学 桉树醇 毒力 化脓性链球菌 生物 群体感应 溶血 病菌 胞外聚合物 细菌 免疫学 生物化学 基因 食品科学 金黄色葡萄球菌 遗传学 精油
作者
K. R. Vijayakumar,Vajravelu Manigandan,Jeyapragash Danaraj,Veeraiyan Bharathidasan,B. Anandharaj,M.R. Sathya
出处
期刊:Journal of Medical Microbiology [Microbiology Society]
卷期号:69 (11): 1308-1318 被引量:21
标识
DOI:10.1099/jmm.0.001253
摘要

Introduction. Streptococcus pyogenes is a diverse virulent synthesis pathogen responsible for invasive systemic infections. Establishment of antibiotic resistance in the pathogen has produced a need for new antibiofilm agents to control the biofilm formation and reduce biofilm-associated resistance development. Aim. The present study investigates the in vitro antibiofilm activity of eucalyptol against S. pyogenes . Methodology. The antibiofilm potential of eucalyptol was assessed using a microdilution method and their biofilm inhibition efficacy was visualized by microscopic analysis. The biochemical assays were performed to assess the influence of eucalyptol on virulence productions. Real-time PCR analysis was performed to evaluate the expression profile of the virulence genes. Results. Eucalyptol showed significant antibiofilm potential in a dose-dependent manner without affecting bacterial growth. Eucalyptol at 300 µg ml −1 (biofilm inhibitory concentration) significantly inhibited the initial stage of biofilm formation in S. pyogenes . However, eucalyptol failed to diminish the mature biofilms of S. pyogenes at biofilm inhibitory concentration and it effectively reduced the biofilm formation on stainless steel, titanium, and silicone surfaces. The biochemical assay results revealed that eucalyptol greatly affects the cell-surface hydrophobicity, auto-aggregation, extracellular protease, haemolysis and hyaluronic acid synthesis. Further, the gene-expression analysis results showed significant downregulation of virulence gene expression upon eucalyptol treatment. Conclusion. The present study suggests that eucalyptol applies its antibiofilm assets by intruding the initial biofilm formation of S. pyogenes . Supplementary studies are needed to understand the mode of action involved in biofilm inhibition.
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