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KMID : 0861020160310050007
Korea Journal of Herbology
2016 Volume.31 No. 5 p.7 ~ p.13
Antimicrobial synergism of Camellia sinensis -isolated five phenol compounds and R-(-)-carvone against mutans streptococci
Song Ok-Hee

Kang Ok-Hwa
Mun Su-Hyun
Kim Min-Cheol
Han Young-Sun
Choi Sung-Hoon
Lee Young-Seob
Kwon Dong-Yeul
Abstract
Objectives : Camellia sinensis (Theaceae) possesses a various beneficial effects such as free radical-scavenging, inactivation of urokinase in cancer cell proliferation, antibacterial, and hypotensive. Dental caries is one of the most common oral infectious disease in a human. Oral microorganisms play a significant role in the etiology of dental caries. An aberration to this ecology due to dietary habits, improper oral hygiene or systemic factors lead to an increase in cariogenic microorganisms. Cariogenic microorganisms like Streptococcus mutans and Streptococcus sobrinus encourage the accumulation and adherence of plaque biofilm by metabolizing sucrose into glucans. The purpose of this study was to investigate the antimicrobial activity of phenolic compounds of Camellia sinensis and R-carvone, monoterpenes, is can be found naturally in numerous essential oils, on Streptococcus mutans and Streptococcus sobrinus .

Methods : The antimicrobial activity of these compounds was determined by the broth microdilution method and checkerboard dilution assay to investigate the potential synergistic effects of each five compounds of Camellia sinensis (C. sinensis) and R-carvone.

Results : C. sinensis-isolated compounds and R-carvone were determined with MIC of more than 1,000 §¶/mL. However, the combination test showed significant synergism against S. mutans and S. sobrinus , implicated in the lowered MICs.

Conclusions : These results suggest that combinatory application of phenolic five compounds (theophyllin, l-theanine, epicatechin, epicatechin gallate, and caffeine) from C. sinensis and R-carvone has a potential synergistic effect and thus may be useful as a mouthrinse in helping control cariogenic microorganism.
KEYWORD
Camellia sinensis, R-carvone, theophyllin, l-theanine, epicatechin, epicatechin gallate, caffeine
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