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Anti-dermatophytic activity of bakuchiol: In vitro mechanistic studies and in vivo tinea pedis-inhibiting activity in a guinea pig model

机译:幕子酚的抗皮肤真菌活性:在豚鼠模型中的体外机制研究和体内足癣抑制活性

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摘要

Bakuchiol was an active antifungal compound isolated from Psoraleae Fructus by means of bioassay-guided fractionation in our previous study. The present work aimed to investigate the underlying mechanisms and the therapeutic effect of bakuchiol in Trichophyton mentagrophytes-induced tinea pedis. After exposure to bakuchiol at 0.25-fold, 0.5-fold and 1-fold of minimum inhibitory concentration (MIC) (3.91 μg/ml) for 24 h, the fungal conidia of T. mentagrophytes demonstrated a significant dose-dependent increase in membrane permeability. Moreover, bakuchiol at 1-fold MIC elicited a 187% elevation in reactive oxygen species (ROS) level in fungal cells after a 3-h incubation. However, bakuchiol did not induce DNA fragmentation. In a guinea pig model of tinea pedis, bakuchiol at 1%, 5% or 10% (w/w) concentration in aqueous cream could significantly reduce the fungal burden of infected feet (p < 0.01-0.05). In conclusion, this is the first report to demonstrate that bakuchiol is effective in relieving tinea pedis and in inhibiting the growth of the dermatophyte T. mentagrophytes by increasing fungal membrane permeability and ROS generation, but not via induction of DNA fragmentation.
机译:补骨脂酚是一种活性抗真菌化合物,在我们先前的研究中通过生物测定指导的分馏方法从from草中分离得到。本工作旨在调查补骨脂酚在毛癣菌毛癣菌引起的足癣中的潜在机制和治疗效果。在以最小抑制浓度(MIC)(3.91μg/ ml)的0.25倍,0.5倍和1倍的剂量将爆米花暴露24小时后,薄荷茶的真菌分生孢子表现出明显的剂量依赖性,其膜通透性增加。此外,爆裂酚在1倍MIC孵育3小时后,可引起真菌细胞中活性氧(ROS)水平升高187%。但是,补骨脂酚不会诱导DNA片段化。在足癣的豚鼠模型中,含水乳膏中浓度为1%,5%或10%(w / w)的补骨脂酚可以显着减少感染脚的真菌负担(p <0.01-0.05)。总而言之,这是第一份证明补骨脂酚可通过增加真菌膜通透性和ROS生成(但不是通过诱导DNA片段化)来缓解足癣并抑制皮肤癣菌T. mentagrophytes的生长的有效报道。

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