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So Yeon Lee

Publications (4)

Antibacterial Sensitivity Changes in Mixed Species Biofilm of Oral Streptococci against Chlorhexidine and Cetylpyridinium Chloride

So Yeon Lee & Si Young Lee · Journal of Advances in Microbiology · 2018

Background and Objectives: Although plaques are present in a mixed state of various bacterial species, it is not yet known how antimicrobial efficacy of mixed bacteria against the antimicrobial agent changes compared to susceptibility of individual bacteria to the antimicrobial a...

Open access Research Article 10.9734/JAMB/2018/39737

Effect of Sub Minimal Inhibitory Concentration Cetylpyridinium Chloride on Biofilm Formation and Hydropyobicity of Streptococci and Actinomycetes

So Yeon Lee & Si Young Lee · Journal of Advances in Microbiology · 2018

Effect of Sub Minimal Inhibitory Concentration Cetylpyridinium Chloride on Biofilm Formation and Hydropyobicity of Streptococci and Actinomycetes Background and Objectives: If the antimicrobial agent is not administered continuously, the concentration of the antimicrobial agent n...

Open access Research Article 10.9734/JAMB/2018/39738

Post-antibiotic Effects and Post-sub-minimal Inhibitory Concentration Effects of Cetylpyridinium Chloride on Streptococcus gordonii and Streptococcus mutans

So Yeon Lee & Si Young Lee · Journal of Advances in Microbiology · 2018

Background and Objectives: When an antimicrobial agent is removed after the treatment of bacteria for a short period, it takes a long time for the bacteria to return to normal growth, despite the reduction in the antimicrobial agent concentration. This phenomenon is referred to t...

Open access Research Article 10.9734/JAMB/2018/39739

Minimum Inhibitory Concentration of Chlorhexidine and Cetylpyridinium Chloride against a Mixture of Two Species of Oral Streptococci

So Yeon Lee & Si Young Lee · Journal of Advances in Microbiology · 2018

Minimum Inhibitory Concentration of Chlorhexidine and Cetylpyridinium Chloride against a Mixture of Two Species of Oral Streptococci Background and Objectives: Although bacteria in plaques are present as a mixed population comprising various species, mechanisms underlying differe...

Open access Research Article 10.9734/JAMB/2018/38780