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异槲皮苷通过诱导膜紊乱发挥杀菌作用。

Fungicidal effect of isoquercitrin via inducing membrane disturbance.

作者信息

Yun JiEun, Lee Heejeong, Ko Hae Ju, Woo Eun-Rhan, Lee Dong Gun

机构信息

School of Life Sciences, BK 21 Plus KNU Creative BioResearch Group, College of Natural Sciences, Kyungpook National University, Daehak-ro 80, Buk-gu, Daegu 702-701, Republic of Korea.

College of Pharmacy, Chosun University, 375 Seosuk-dong, Dong-gu, Gwangju 501-759, Republic of Korea.

出版信息

Biochim Biophys Acta. 2015 Feb;1848(2):695-701. doi: 10.1016/j.bbamem.2014.11.019. Epub 2014 Nov 21.

Abstract

Isoquercitrin is a flavonoid isolated from Aster yomena, which has been used as a traditional medicinal herb. In the present study, we investigated the antifungal activity and the underlying mechanism of isoquercitrin. Isoquercitrin had a potent effect in the susceptibility test against pathogenic fungi and almost no hemolysis. Propidium iodide and potassium release assays were conducted in Candida albicans, and these studies confirmed that isoquercitrin induced membrane damage, thereby, increasing permeability. Membrane potential was analyzed using 3,3'-dipropylthiacarbocyanine iodide [DiSC3(5)], and the transition of membrane potential was indicated by an increased fluorescence intensity. To further analyze these results using model membranes, giant unilamellar vesicles and large unilamellar vesicles that encapsulated calcein were prepared and the detection of calcein leakage from liposomes indicated that membrane was disturbed. We further verified membrane disturbance by observing the disordered status of the lipid bilayer with 1,6-diphenyl-1,3,5-hexatriene fluorescence. Moreover, changes in size and granularity of the cell were revealed in flow cytometric analysis. All these results suggested the membrane disturbance and the degree of disturbance was estimated to be within a range of 2.3 nm to 3.3 nm by fluorescein isothiocyanate-dextran analysis. Taken together, isoquercitrin exerts its fungicidal effect by disturbing the membrane of cells.

摘要

异槲皮苷是从紫菀中分离出的一种黄酮类化合物,紫菀一直被用作传统草药。在本研究中,我们研究了异槲皮苷的抗真菌活性及其潜在机制。异槲皮苷在针对致病真菌的药敏试验中具有强效作用,且几乎没有溶血现象。在白色念珠菌中进行了碘化丙啶和钾离子释放试验,这些研究证实异槲皮苷会导致细胞膜损伤,从而增加通透性。使用3,3'-二丙基硫代碳菁碘化物[DiSC3(5)]分析膜电位,膜电位的转变通过荧光强度增加来表明。为了使用模型膜进一步分析这些结果,制备了包裹钙黄绿素的巨型单层囊泡和大单层囊泡,脂质体中钙黄绿素泄漏的检测表明膜受到了干扰。我们通过用1,6-二苯基-1,3,5-己三烯荧光观察脂质双层的无序状态进一步验证了膜干扰。此外,流式细胞术分析揭示了细胞大小和粒度的变化。所有这些结果表明存在膜干扰,通过异硫氰酸荧光素-葡聚糖分析估计干扰程度在2.3纳米至3.3纳米范围内。综上所述,异槲皮苷通过干扰细胞膜发挥其杀菌作用。

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