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Bioactive Compounds Produced by Hypoxylon fragiforme against Staphylococcus aureus Biofilms

机译:梭状芽孢杆菌产生的抗金黄色葡萄球菌生物膜的生物活性化合物

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摘要

Treating infections organized in biofilms is a challenge due to the resistance of the pathogens against antibiotics and host immune cells. Many fungi grow in a wet environment, favorable for the growth of bacterial biofilms, and we speculated that fungi possess some strategies to control these bacterial biofilms. A fungus identified as Hypoxylon fragiforme, was collected in the Harz Mountains, Germany, and its mycelial culture was fermented in different culture media for 67 days to test its biological potential against bacterial biofilms. Sclerin, sclerin diacid and its 3-methyl monoester (methyl 1-(5-hydroxy-6-carboxylic-2,3,4-trimethylphenyl) propionate) are here described for the first time from this fungus. Sclerin and its diacid interfered with the biofilm formation of the pathogen Staphylococcus aureus, inhibiting 86% and 80% of the biofilm at 256 μg mL−1, respectively, but not killing the bacterium. Interestingly, the monomethylester of sclerin diacid was inactive. Although these compounds did not possess any activity against a pre-formed biofilm, they prevented its formation at subtoxic concentrations. Furthermore, sclerin and its diacid displayed a high specificity against Staphylococcus aureus, indicating a good strategy against pathogenic biofilms when combined with antibiotics.
机译:由于病原体对抗生素和宿主免疫细胞具有抗性,因此治疗生物膜中组织的感染是一项挑战。许多真菌在潮湿的环境中生长,有利于细菌生物膜的生长,我们推测真菌拥有一些控制这些细菌生物膜的策略。在德国的哈尔茨山区收集了一种被鉴定为脆弱梭状芽胞杆菌的真菌,并将其菌丝体培养物在不同的培养基中发酵67天,以测试其针对细菌生物膜的生物潜力。此处首次从该真菌中描述了巩膜素,巩膜酸二酸及其3-甲基单酯(1-(5-羟基-6-羧酸-2,3,4-三甲基苯基)丙酸甲酯)。巩膜蛋白酶及其二酸干扰金黄色葡萄球菌的生物膜形成,在256μgmL -1 时分别抑制了86%和80%的生物膜,但并未杀死细菌。有趣的是,硬脂酸二酸的单甲酯是无活性的。尽管这些化合物对预先形成的生物膜没有任何活性,但它们阻止了其在亚毒性浓度下的形成。此外,sclerin及其二酸对金黄色葡萄球菌显示出高特异性,表明与抗生素联合使用时对病原性生物膜的良好策略。

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