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原位 SEM、TEM 和 AFM 研究柠檬草油在液体和蒸气相中对白色念珠菌的抗菌活性。

In situ SEM, TEM and AFM studies of the antimicrobial activity of lemon grass oil in liquid and vapour phase against Candida albicans.

机构信息

Centre for Rural Development & Technology, Indian Institute of Technology Delhi, Hauz Khas, New Delhi, India.

出版信息

Micron. 2010 Oct;41(7):797-805. doi: 10.1016/j.micron.2010.05.007. Epub 2010 May 24.

Abstract

Inhibition of Candida albicans growth was shown by lemon grass oil (LGO) and lemon grass oil vapour (LGO vapour) at 288microg/ml and 32.7microg/ml concentration, respectively. The assessment of cell damage by LGO and LGO vapour was done through scanning electron microscope (SEM), transmission electron microscope (TEM) and atomic force microscope (AFM) observations. SEM analysis showed complete rupture of C. albicans cells treated with LGO vapour while in those treated with LGO in broth, only shrinkage was observed. TEM study showed the alterations in morphology upon treatment with LGO while complete degradation of the Candida cells was observed in case of LGO vapour. Further three dimensional morphological changes and roughness of the cells have also been evaluated with AFM after the treatment with LGO & LGO vapour. Roughness (root mean square value) was significantly higher in control C. albicans cells (211.97nm) than LGO (143nm) and LGO vapour (5.981nm) treated cells. The results for the first time demonstrate relatively higher efficacy of LGO vapours for inhibition and cellular damage of C. albicans cells as compared to the LGO in liquid phase. This suggests the potential application of LGO vapour phase against infections caused by C. albicans.

摘要

柠檬草油(LGO)和柠檬草油蒸气(LGO 蒸气)在 288μg/ml 和 32.7μg/ml 浓度下分别显示出对白色念珠菌生长的抑制作用。通过扫描电子显微镜(SEM)、透射电子显微镜(TEM)和原子力显微镜(AFM)观察评估 LGO 和 LGO 蒸气对细胞损伤的影响。SEM 分析表明,用 LGO 蒸气处理的白色念珠菌细胞完全破裂,而在用 LGO 处理的肉汤中,仅观察到收缩。TEM 研究表明,在用 LGO 处理后形态发生了变化,而在用 LGO 蒸气处理后,白色念珠菌细胞完全降解。进一步用 AFM 评估了用 LGO 和 LGO 蒸气处理后细胞的三维形态变化和粗糙度。处理后,粗糙度(均方根值)在对照白色念珠菌细胞(211.97nm)中明显高于 LGO(143nm)和 LGO 蒸气(5.981nm)处理的细胞。这些结果首次表明,与液相中的 LGO 相比,LGO 蒸气在抑制和破坏白色念珠菌细胞方面具有相对更高的功效。这表明 LGO 蒸气相在对抗白色念珠菌引起的感染方面具有潜在的应用。

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