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Anti-Biofilm Activity of the Fungal Phytotoxin Sphaeropsidin A against Clinical Isolates of Antibiotic-Resistant Bacteria

机译:真菌植物毒素的抗生物膜活性Sphaeropsidin A对抗抗生素抗性细菌的临床分离株

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摘要

Many pathogens involved in human infection have rapidly increased their antibiotic resistance, reducing the effectiveness of therapies in recent decades. Most of them can form biofilms and effective drugs are not available to treat these formations. Natural products could represent an efficient solution in discovering and developing new drugs to overcome antimicrobial resistance and treat biofilm-related infections. In this study, 20 secondary metabolites produced by pathogenic fungi of forest plants and belonging to diverse classes of naturally occurring compounds were evaluated for the first time against clinical isolates of antibiotic-resistant Gram-negative and Gram-positive bacteria. -Epoformin, sphaeropsidone, and sphaeropsidin A showed antimicrobial activity on all test strains. In particular, sphaeropsidin A was effective at low concentrations with Minimum Inhibitory Concentration (MIC) values ranging from 6.25 μg/mL to 12.5 μg/mL against all reference and clinical test strains. Furthermore, sphaeropsidin A at sub-inhibitory concentrations decreased methicillin-resistant (MRSA) and biofilm formation, as quantified by crystal violet staining. Interestingly, mixtures of sphaeropsidin A and -epoformin have shown antimicrobial synergistic effects with a concomitant reduction of cytotoxicity against human immortalized keratinocytes. Our data show that sphaeropsidin A and -epoformin possess promising antimicrobial properties.
机译:涉及人类感染的许多病原体迅速增加了它们的抗生素抗性,近几十年来降低疗法的有效性。他们中的大多数可以形成生物膜和有效的药物无法治疗这些地层。天然产品可以代表发现和开发新药的有效解决方案,以克服抗微生物抗性和治疗生物膜相关的感染。在该研究中,第一次对抗生素抗革兰阴性和革兰氏阳性细菌的临床分离物评估了由森林植物的致病性真菌和属于各种天然存在的自然化合物的20种次生代谢物。 -epoFormin,Sphaeropsidone和Sphaeropsidin A在所有测试菌株上显示出抗微生物活性。特别地,Sphaeropsidina在低浓度下有效,最小抑制浓度(MIC)值范围为6.25μg/ ml至12.5μg/ ml,抵抗所有参考和临床试卷。此外,通过晶体紫色染色量化,Sphaeropsidin A处于亚抑制浓度下降低了甲氧胞蛋白抗性(MRSA)和生物膜形成。有趣的是,Sphaeropsidin A和-epoFormin的混合物表现出抗微生物协同作用,其伴随着对人的细胞毒性的细胞毒性免于人造永生的角质形成细胞。我们的数据显示,Sphaeropsidin A和-epoFormin具有有前途的抗微生物性质。

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