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Antifungal activity, kinetics and molecular mechanism of action of garlic oil against Candida albicans

机译:大蒜油对白色念珠菌的抗真菌活性,动力学及作用机理

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The antifungal activity, kinetics, and molecular mechanism of action of garlic oil against Candida albicans were investigated in this study using multiple methods. Using the poisoned food technique, we determined that the minimum inhibitory concentration of garlic oil was 0.35 μg/mL. Observation by transmission electron microscopy indicated that garlic oil could penetrate the cellular membrane of C. albicans as well as the membranes of organelles such as the mitochondria, resulting in organelle destruction and ultimately cell death. RNA sequencing analysis showed that garlic oil induced differential expression of critical genes including those involved in oxidation-reduction processes, pathogenesis, and cellular response to drugs and starvation. Moreover, the differentially expressed genes were mainly clustered in 19 KEGG pathways, representing vital cellular processes such as oxidative phosphorylation, the spliceosome, the cell cycle, and protein processing in the endoplasmic reticulum. In addition, four upregulated proteins selected after two-dimensional fluorescence difference in gel electrophoresis (2D-DIGE) analysis were identified with high probability by mass spectrometry as putative cytoplasmic adenylate kinase, pyruvate decarboxylase, hexokinase, and heat shock proteins. This is suggestive of a C. albicans stress responses to garlic oil treatment. On the other hand, a large number of proteins were downregulated, leading to significant disruption of the normal metabolism and physical functions of C. albicans.
机译:本研究采用多种方法研究了大蒜油对白色念珠菌的抗真菌活性,动力学和分子机理。使用中毒食品技术,我们确定大蒜油的最低抑菌浓度为0.35μg/ mL。透射电子显微镜观察表明,大蒜油可穿透白色念珠菌的细胞膜以及诸如线粒体的细胞器膜,从而导致细胞器破坏并最终导致细胞死亡。 RNA测序分析表明,大蒜油可诱导关键基因的差异表达,这些关键基因包括与氧化还原过程,发病机理以及对药物和饥饿的细胞应答有关的那些基因。此外,差异表达的基因主要聚集在19条KEGG途径中,代表重要的细胞过程,例如氧化磷酸化,剪接体,细胞周期和内质网中的蛋白质加工。另外,在凝胶电泳(2D-DIGE)分析中通过二维荧光差异选择的四种上调蛋白被质谱法鉴定为推定的胞质腺苷酸激酶,丙酮酸脱羧酶,己糖激酶和热休克蛋白。这表明白色念珠菌对大蒜油处理的应激反应。另一方面,大量蛋白质被下调,导致白色念珠菌的正常代谢和身体功能的重大破坏。

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