伯克霍尔德氏菌对假丝酵母菌产生的抗真菌活性物质

Flávia Lassie, Janaína Emiliano, A. S. Simionato, M. Navarro, Bárbara Gionco, Caroline Rosa da Silva, E. Niekawa, F. Silva, M. Dealis, Maria Valoto, G. Andrade
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引用次数: 2

摘要

念珠菌属的酵母菌是共生的,在胃肠道和生殖道定植。占医院获得性感染的15%,它们被认为是临床重要的病原体。真菌感染的出现以及内在和获得性耐药的发生反映在对新的抗菌素的增加研究中。本研究的目的是评价伯克霍尔德菌RV7S3胞外物质对念珠菌属酵母菌的抑菌活性。对其抑菌活性进行了生物化学鉴定和表征,并通过琼脂扩散试验、最低抑菌浓度(MIC)、对生物膜形成的作用和溶血活性进行了评价。数据表明,抗真菌物质是一种水解酶,具有解脂活性。该酶的最低浓度为0.38µg.mL-1,能够抑制90%的真菌生长。琼脂扩散试验显示,真菌生长形成直径大于10 mm的抑制晕,为17.5±0.5 mm。该物质显示出低溶血活性和降低生物膜细胞活力,表明其作为抗真菌剂的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioactive substances produced by Burkholderia sp. with antifungal action in Candida spp
Yeasts of the genus Candida are commensals, colonizing the gastrointestinal and genital tract. Accounting for 15% of hospital acquired infections, they are considered a pathogen of clinical importance. The emergence of fungal infections and the occurrence of intrinsic and acquired resistance have reflected in the increased search for new antimicrobials. The objective of this study was to evaluate the antifungal activity of extracellular substances produced by Burkholderia sp. strain RV7S3, for yeast control of the genus Candida. The substance responsible for the antifungal activity was identified and characterized biochemically, its activity was evaluated by agar diffusion tests, minimum inhibitory concentration (MIC), action effect on biofilm formation, and hemolytic activity. The data suggested that the antifungal substance is a hydrolase that exhibits lipolytic activity. The lowest concentration of this enzyme, capable of inhibiting 90% of fungal growth, was 0.38 µg.mL-1. The agar diffusion test showed inhibition halo formation of fungal growth with a diameter of 10 mm or greater, presenting 17.5 ± 0.5 mm. The substance showed low hemolytic activity and reduced biofilm cell viability, demonstrating its potential as an antifungal agent.
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