Department of Biosciences, Jamia Millia Islamia, New Delhi 110025, India.
Microb Pathog. 2012 May;52(5):251-8. doi: 10.1016/j.micpath.2011.11.005. Epub 2011 Dec 20.
Effect of cinnamaldehyde (CD), 4-hydroxy-3-methoxy cinnamaldehyde (HMCD) and 3,5-dimethoxy-4-hydroxy cinnamaldehyde (HDMCD) on growth and virulence factors of standard (Candida albicans 90028) and 26 oral isolates of C. albicans has been investigated. Growth was significantly inhibited by all three compounds in both solid and liquid medium, no systematic difference was observed between various isolates. MIC₉₀ ranged from 125 to 450 μg/ml for CD, 100-250 μg/ml for HMCD and 62.5-125 μg/ml for HDMCD. All oral isolates were found to be proteinase and phospholipase secretors, both proteinase and phospholipase secretion was significantly inhibited by all the three tested molecules. No systematic difference in secretion or its inhibition was observed between standard and oral isolates as also between various isolates. Average drop in proteinase and phospholipase secretion caused by ½ MIC of CD was 33% and 28%, HMCD; 46% and 44%, HDMCD; 59% and 54%. The standard strain and all the 26 oral isolates displayed morphogenesis under triggering experimental conditions; no difference was seen between standard and various isolates. In the absence of test compounds hyphae development at 300 min was 83% for standard strain whereas average hyphae development for oral isolates was 85%. Average hyphal transition was suppressed by all tested compounds. At ½ MIC concentration at 300 min average hyphal transition of standard and oral isolates was CD; 49% and 57%, HMCD; 45% and 38%, HDMCD; 5% and 5%. Average haemolytic activity of the three tested compounds varied from 10 to 15% at their highest MIC compared to 20% shown by fluconazole at typical MIC of 30 μg/ml.
肉桂醛(CD)、4-羟基-3-甲氧基肉桂醛(HMCD)和 3,5-二甲氧基-4-羟基肉桂醛(HDMCD)对标准(白色念珠菌 90028)和 26 株口腔白色念珠菌的生长和毒力因子的影响进行了研究。这三种化合物在固体和液体培养基中均显著抑制生长,各种分离株之间没有观察到系统差异。CD 的 MIC90 范围为 125-450μg/ml,HMCD 为 100-250μg/ml,HDMCD 为 62.5-125μg/ml。所有口腔分离株均为蛋白酶和磷脂酶分泌株,所有三种测试分子均显著抑制蛋白酶和磷脂酶的分泌。标准株和口腔分离株之间以及各种分离株之间在分泌或其抑制方面没有观察到系统差异。CD 的 1/2 MIC 导致蛋白酶和磷脂酶分泌平均下降 33%和 28%,HMCD 分别为 46%和 44%,HDMCD 分别为 59%和 54%。标准株和所有 26 株口腔分离株在触发实验条件下表现出形态发生;标准株和各种分离株之间没有差异。在没有测试化合物的情况下,300 分钟时标准株的菌丝发育率为 83%,而口腔分离株的平均菌丝发育率为 85%。所有测试化合物均抑制菌丝过渡。在 300 分钟时,1/2 MIC 浓度下标准株和口腔分离株的平均菌丝过渡率为 CD:49%和 57%,HMCD:45%和 38%,HDMCD:5%和 5%。三种测试化合物的最高 MIC 时的平均溶血活性为 10-15%,而氟康唑在典型 MIC 为 30μg/ml 时的溶血活性为 20%。