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首页> 外文期刊>Biological & pharmaceutical bulletin >Fungicidal effect of piscidin on Candida albicans: Pore formation in lipid vesicles and activity in fungal membranes
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Fungicidal effect of piscidin on Candida albicans: Pore formation in lipid vesicles and activity in fungal membranes

机译:杀螨药对白色念珠菌的杀真菌作用:脂质囊泡中的孔形成和真菌膜的活性

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摘要

Piscidin, a 22-residue cationic peptide isolated from the mast cells of hybrid striped bass, has potent antimicrobial activities. In the present study, we investigated the fungicidal activity and mode of action of piscidins. Fungicidal and hemolytic assays were examined in order to assess their potency and toxicity, respectively. The results showed that fungicidal and hemolytic activities were higher For piscidin 1 (P1) than piscidin 3 (P3). Additionally, the abilities to permeabilize the model phospholipids membranes were also higher for P1 than P3, which were consistent with the biological activities of P1 and P3. These results suggest that the biological action of the peptides may be carried out through the lipid membrane. To understand the fungicidal properties of P1, we focused on a membrane-active mechanism of the peptide by in vivo testing against Candida albicans; as the model organism. Flow cytometric analysis by using bis-(1,3-dibutylbarbituric acid) trimethine oxonol [DiBAC(4)(3)] and protoplast regeneration experiments showed that P1 caused fungal membrane damage. Furthermore, fluorescence analysis, using 1,6-diphenyl-1,3,5-hexatriene, revealed that these peptides created pores in fungal membranes. Thus, the present study demonstrated that piscidins exert their fungicidal effects by disrupting fungal membrane through pore formation.
机译:从混合条纹鲈的肥大细胞中分离出来的22个残基阳离子肽Piscidin具有有效的抗菌活性。在本研究中,我们调查了杀孢子素的杀真菌活性和作用方式。检查了杀真菌和溶血试验,以分别评估其效力和毒性。结果表明,piscidin 1(P1)的杀菌和溶血活性高于piscidin 3(P3)。另外,P1的透化模型磷脂膜的能力也高于P3,这与P1和P3的生物学活性一致。这些结果表明,肽的生物作用可以通过脂质膜来进行。为了了解P1的杀真菌特性,我们通过针对白色念珠菌的体内测试,重点研究了该肽的膜活性机制。作为模型生物。流式细胞仪分析使用双-(1,3-二丁基巴比妥酸)三甲氧合己酮酚[DiBAC(4)(3)]和原生质体再生实验表明,P1引起真菌膜损伤。此外,使用1,6-二苯基-1,3,5-己三烯的荧光分析显示,这些肽在真菌膜上形成了孔。因此,本研究表明,甜菜碱通过孔形成破坏真菌膜而发挥杀菌作用。

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