Investigation of the antibacterial activity of 3-O-octanoyl-(–)-epicatechin
Authors/Creators
- 1. School of Pharmacy, The Robert Gordon University, Schoolhill, Aberdeen. AB10 1FR. UK.
- 2. Microbiology Group, School of Pharmacy, University of London, 29-39 Brunswick Square, London. WC1N 1AX. UK.
- 3. Faculty of Chemistry, Materials and Bioengineering, Kansai University, Suita, 564-8680 Osaka. Japan.
- 4. Mitsui Norin Co. Ltd., 1-2-9 Nishi-Shinbashi, Minato-Ku, Tokyo 105-8427, Japan.
Description
Aims: To measure antibacterial activity of the semi-synthetic flavonoid 3-O-octanoyl-(-)-epicatechin and investigate the mechanism of action.
Methods and results: MICs determined by the broth microdilution method were 50 μg ml-1 for β-lactam sensitive and resistant Staphylococcus aureus, and 100 μg ml-1 for vancomycin sensitive and resistant enterococci. In time-kill studies, 100 μg ml-1 3-O-octanoyl-(-)-epicatechin reduced colony forming unit numbers of antibiotic sensitive and methicillin resistant Staph. aureus below detectable levels within 120 min. Bacterial aggregation was not observed when 3-O-octanoyl-(-)-epicatechin treated cells were examined by light microscopy. It was also shown that 50 μg ml-1 3-O-octanoyl-(-)-epicatechin is capable of reducing colony forming unit numbers of high cell density Staph. aureus populations by 80-fold within 60 min incubation, and inducing leakage of 50 % of their internal potassium within just 10 min.
Conclusions: 3-O-octanoyl-(-)-epicatechin is active against Gram positive bacteria, has bactericidal activity against both antibiotic sensitive and resistant strains, and is likely to exert its primary antibacterial effect by damaging the cytoplasmic membrane.
Significance and impact of study: 3-O-octanoyl-(-)-epicatechin has significant antibacterial activity and additional structural modification and / or formulation studies may allow this to be potentiated.
Files
Cushnie et al (2008) post-peer reviewed version.pdf
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