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活性氧物种在双子吡啶盐抗酵母真菌机制中的作用

Action of reactive oxygen species in the antifungal mechanism of gemini-pyridinium salts against yeast.

作者信息

Shirai Akihiro, Ueta Shouko, Maseda Hideaki, Kourai Hiroki, Omasa Takeshi

机构信息

Department of Biological Science and Technology, Biosystems Engineering, Institute of Technology and Science, The University of Tokushima, Tokushima, Japan.

出版信息

Biocontrol Sci. 2012 Jun;17(2):77-82. doi: 10.4265/bio.17.77.

Abstract

We previously found that the gemini quaternary salt (gemini-QUAT) containing two pyridinium residues per molecule, 3,3'- (2,7-dioxaoctane) bis (1-decylpyridinium bromide) (3DOBP-4,10) , exerted fungicidal activity against Saccharomyces cerevisiae and caused respiration inhibition and the cytoplasmic leakage of ATP, magnesium, and potassium ions. Here, we investigated how the gemini-QUAT, 3DOBP-4,10, exerts more powerful antimicrobial activity than the mono-QUAT N-cetylpyridinium chloride (CPC) and examined the association between reactive oxygen species (ROS) and the antimicrobial mechanism. Antifungal assays showed that the activity of 3DOBP-4,10 against two yeasts, S. cerevisiae and Candida albicans, was significantly elevated under aerobic conditions, and largely reduced under anaerobic conditions (nitrogen atmosphere) . Adding radical scavengers such as superoxide dismutase, catalase and potassium iodide (KI) also decreased the fungicidal activity of 3DOBP-4,10 but negligibly affected that of CPC. We measured survival under static conditions and found that the rapid fungicidal profile of 3DOBP-4,10 was lost, whereas that of CPC was slightly affected in the presence of KI. Our results suggest that 3DOBP-4,10 exerts powerful antimicrobial activity by penetrating the cell wall and membrane, which then allows oxygen to enter the cells, where it participates in the generation of intracellular ROS. The activity could thus be attributable to a synergic antimicrobial combination of the disruption of organelle membranes by the QUAT and oxidative stress imposed by ROS.

摘要

我们之前发现,每个分子含有两个吡啶鎓残基的双子季铵盐(gemini-QUAT),即3,3'-(2,7-二氧杂辛烷)双(1-癸基吡啶溴化物)(3DOBP-4,10),对酿酒酵母具有杀菌活性,并导致呼吸抑制以及ATP、镁离子和钾离子的细胞质泄漏。在此,我们研究了gemini-QUAT 3DOBP-4,10如何发挥比单季铵盐N-十六烷基吡啶氯化物(CPC)更强的抗菌活性,并研究了活性氧(ROS)与抗菌机制之间的关联。抗真菌试验表明,3DOBP-4,10在有氧条件下对酿酒酵母和白色念珠菌这两种酵母的活性显著提高,而在厌氧条件下(氮气气氛)则大幅降低。添加超氧化物歧化酶、过氧化氢酶和碘化钾(KI)等自由基清除剂也会降低3DOBP-4,10的杀菌活性,但对CPC的杀菌活性影响可忽略不计。我们在静态条件下测量了存活率,发现3DOBP-4,10的快速杀菌特性消失,而在KI存在的情况下,CPC的快速杀菌特性受到轻微影响。我们的结果表明,3DOBP-4,10通过穿透细胞壁和细胞膜发挥强大的抗菌活性,这使得氧气进入细胞,在细胞内参与ROS的生成。因此,该活性可能归因于季铵盐对细胞器膜的破坏与ROS施加的氧化应激的协同抗菌组合。

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