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Generation of reactive oxygen species in vitro by Malassezia yeasts

机译:马拉色酵母在体外产生活性氧

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BACKGROUND AND METHODS: Free oxygen species are able to destroy cells due to their cytotoxic effect, which is based on lipid peroxidation, enzyme oxidation and protein oxidation. We analyzed the ability of six different Malassezia (M.) species to generate reactive oxygen species (ROS), using the lucigenin-amplified chemiluminescence. Further investigations showed the effect of different concentrations of terbinafine on ROS generation by M. furfur and M. pachydermatis after 10, 30 and 60 minutes. RESULTS: All of the investigated Malassezia species (M. furfur, M. globosa, M. sympodialis, M. slooffiae, M. obtusa, M. pachydermatis) was able to generate reactive oxygen species. Terbinafine inhibited free radical production by M. furfur and M. pachydermatis. CONCLUSION: Dependent on their cell concentrations, M. species have the ability to generate ROS. The ability of the different Malassezia species to produce ROS should be considered as one further virulence factor of this yeast. The antifungal agent terbinafine (concentrations from 100 microg to 1 microg ml -1) reduced ROS production by M. furfur and M. pachydermatis. Terbinafine acts as oxygen species scavenger. This could be an additional mechanism supporting the classic antifungal effect of this agent, the inhibition of ergosterol synthesis.
机译:背景和方法:游离氧由于具有细胞毒性作用而能够破坏细胞,这种作用基于脂质过氧化,酶氧化和蛋白质氧化。我们分析了六种不同的马拉色菌(M.)物种产生的活性氧物种(ROS)的能力,使用了发光素放大的化学发光。进一步的研究表明,在10、30和60分钟后,不同浓度的特比萘芬对糠醛分枝杆菌和厚皮分枝杆菌产生ROS的影响。结果:所有调查的马拉色菌属物种(糠M分枝杆菌,球果分枝杆菌,交趾分枝杆菌,s.looffiae分枝杆菌,obtusa分枝杆菌,pachydermatis分枝杆菌)均能够产生活性氧。特比萘芬抑制糠醛分枝杆菌和厚皮分枝杆菌的自由基产生。结论:根据其细胞浓度,分枝杆菌具有产生ROS的能力。不同的马拉色菌产生ROS的能力应被认为是该酵母的另一个致病因子。抗真菌剂特比萘芬(浓度从100微克到1微克ml -1)减少了糠M分枝杆菌和厚皮分枝杆菌的ROS产生。特比萘芬充当氧气清除剂。这可能是支持该药物经典抗真菌作用(抑制麦角固醇合成)的另一种机制。

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