2015•Crescent Journal of Medical and Biological SciencesRequires access

An In Vitro Study of the Effect of Cinnamaldehyde on the Growth of Candida albicans Compared to Nystatin and Fluconazole

Diyardokht Rahemi, Neda Babaee, Sohrab Kazemi, Seyyed Ali Asghar Sefidgar, Ali Akbar Moghadamnia

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Abstract

Objective: Cinnamaldehyde is the main active component of cinnamon essential oil with antibacterial and antifungal effects. This in vitro study was done to investigate the effect of cinnamaldehyde on the growth of standard strain of Candida albicans (C. albicans) in comparison to nystatin suspension and fluconazole. Materials and Methods: The tests were designed for the three groups of this study namely cinnamaldehyde, fluconazole and nystatin. Standard strain of C. albicans (PTCC 5027) was used. Three methods namely disc diffusion, well diffusion and microdilution were used. Based on elevation of cinnamaldehyde concentrations, its antifungal effect was increased. Results: The minimum inhibitory concentration (MIC) of antifungal effect of cinnamaldehyde was 0.312 μl/ml. This effect is similar to the effect of 100000 IU/ml nystatin in concentration of 20 μl/ml and 1% fluconazole in concentration of 40 μl/ml. The mean (±SD) of inhibition zone diameter in concentration of 80 μl/ml for disc and well diffusion were 60.4 (±2.2) and 70 (±3.5) mm, respectively. Conclusion: These inhibition zones were larger than the zones for fluconazole and nystatin groups. According to the results, cinnamaldehyde has dose-dependent anti-C. albicans effect. In some concentrations, the cinnamaldehyde effect is similar to fluconazole and nystatin.

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What this paper is about

Objective: Cinnamaldehyde is the main active component of cinnamon essential oil with antibacterial and antifungal effects. This in vitro study was done to investigate the effect of cinnamaldehyde on the growth of standard strain of Candida albicans (C. albicans) in comparison to nystatin suspension and fluconazole. Materials and Methods: The tests were designed for the three groups of this study namely cinnamaldehyde, fluconazole and nystatin. Standard strain of C. albicans (PTCC 5027) was used. Three methods namely disc diffusion, well diffusion and microdilution were used. Based on elevation of cinnamaldehyde concentrations, its antifungal effect was increased. Results: The minimum inhibitory concentration (MIC) of antifungal effect of cinnamaldehyde was 0.312 μl/ml. This effect is similar to the effect of 100000 IU/ml nystatin in concentration of 20 μl/ml and 1% fluconazole in concentration of 40 μl/ml. The mean (±SD) of inhibition zone diameter in concentration of 80 μl/ml for disc and well diffusion were 60.4 (±2.2) and 70 (±3.5) mm, respectively. Conclusion: These inhibition zones were larger than the zones for fluconazole and nystatin groups. According to the results, cinnamaldehyde has dose-dependent anti-C. albicans effect. In some concentrations, the cinnamaldehyde effect is similar to fluconazole and nystatin.

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Available abstract

Objective: Cinnamaldehyde is the main active component of cinnamon essential oil with antibacterial and antifungal effects. This in vitro study was done to investigate the effect of cinnamaldehyde on the growth of standard strain of Candida albicans (C. albicans) in comparison to nystatin suspension and fluconazole. Materials and Methods: The tests were designed for the three groups of this study namely cinnamaldehyde, fluconazole and nystatin. Standard strain of C. albicans (PTCC 5027) was used. Three methods namely disc diffusion, well diffusion and microdilution were used. Based on elevation of cinnamaldehyde concentrations, its antifungal effect was increased. Results: The minimum inhibitory concentration (MIC) of antifungal effect of cinnamaldehyde was 0.312 μl/ml. This effect is similar to the effect of 100000 IU/ml nystatin in concentration of 20 μl/ml and 1% fluconazole in concentration of 40 μl/ml. The mean (±SD) of inhibition zone diameter in concentration of 80 μl/ml for disc and well diffusion were 60.4 (±2.2) and 70 (±3.5) mm, respectively. Conclusion: These inhibition zones were larger than the zones for fluconazole and nystatin groups. According to the results, cinnamaldehyde has dose-dependent anti-C. albicans effect. In some concentrations, the cinnamaldehyde effect is similar to fluconazole and nystatin.

Key concepts: Nystatin, Cinnamaldehyde, Fluconazole, Candida albicans, Corpus albicans, Minimum inhibitory concentration, Chemistry, Microbiology

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