Division of Clinical Microbiology, Department of Medical Technology, Faculty of Associated Medical Sciences, Chiang Mai University, Chiang Mai, 50200, Thailand; The Graduate School, Chiang Mai University, Chiang Mai, 50200, Thailand.
Division of Clinical Microbiology, Department of Medical Technology, Faculty of Associated Medical Sciences, Chiang Mai University, Chiang Mai, 50200, Thailand.
Microb Pathog. 2018 Oct;123:296-303. doi: 10.1016/j.micpath.2018.07.028. Epub 2018 Jul 21.
The present study was conducted to investigate the effects of a natural product from honeybees, named propolis, against Cryptococcus neoformans and its effect in the expression of putative virulence factors, such as capsular polysaccharides, melanin production and urease enzyme. Ethanol extract propolis (EEP) was first tested for its anti-cryptococcal activity and explored its impact on virulence factors in both phenotypes and enzyme activities. Moreover, the cryptococcal virulence genes were investigated using real time RT-PCR. The MIC value of EEP, 1 mg ml, displayed potent inhibition of C. neoformans cell viability. Of note is the high efficacy of sub-MIC concentrations (ranging from 0.5 to 0.125 mg ml) in decreasing the production of capsule, melanin, as well as laccase and urease enzyme activities. Importantly, EEP exhibited statistically decrease in the expression of gene-encoded virulence factors. In conclusion, EEP mediates C. neoformans growth inhibition and virulence factors by reducing the gene-encoding virulence-associated proteins and, thereby, disrupting the morphologic presence and attenuating their virulence. This study introduced EEP as regards anti-cryptococcal virulence factors activities; therefore, EEP would provide alternative ways of controlling the pathogenicity.
本研究旨在探讨一种来自蜜蜂的天然产物——蜂胶对新型隐球菌及其潜在毒力因子表达的影响,如荚膜多糖、黑色素生成和脲酶酶。首先测试了蜂胶乙醇提取物 (EEP) 的抗隐球菌活性,并探讨了其对两种表型和酶活性中毒力因子的影响。此外,还使用实时 RT-PCR 研究了隐球菌毒力基因。EEP 的 MIC 值为 1 mg/ml,对新型隐球菌细胞活力表现出很强的抑制作用。值得注意的是,亚 MIC 浓度(范围从 0.5 到 0.125 mg/ml)在降低荚膜、黑色素以及漆酶和脲酶活性方面具有很高的功效。重要的是,EEP 表现出统计学上降低了与毒力相关的基因编码因子的表达。总之,EEP 通过减少与毒力相关的基因编码蛋白来介导新型隐球菌的生长抑制和毒力因子,从而破坏形态存在并减弱其毒力。本研究介绍了 EEP 对新型隐球菌毒力因子活性的影响;因此,EEP 将为控制致病性提供替代方法。