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Identification of Antimicrobial Compounds from Sandwithia guyanensis-Associated Endophyte Using Molecular Network Approach

机译:利用分子网络方法鉴定砂脂联合联合的内心子宫内体的抗微生物化合物

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摘要

The emergence of multidrug resistant bacterial pathogens and the increase of antimicrobial resistance constitutes a major health challenge, leading to intense research efforts being focused on the discovery of novel antimicrobial compounds. In this study, endophytes were isolated from different parts of Sandwithia guyanensis plant (leaves, wood and latex) belonging to the Euphorbiaceae family and known to produce antimicrobial compounds, and chemically characterised using Molecular Network in order to discover novel antimicrobial molecules. One fungal endophyte extract obtained from S. guyanensis latex showed significant antimicrobial activity with Minimal Inhibitory Concentration on methicillin-resistant Staphylococcus aureus at 16 µg/mL. The chemical investigation of this fungus (Lecanicillium genus) extract led to the isolation of 5 stephensiolides compounds, four of which demonstrated antibacterial activity. Stephensiolide I and G showed the highest antibacterial activity on MRSA with a MIC at 4 and 16 µg/mL respectively.
机译:多药物抗性细菌病原体的出现和抗微生物抗性的增加构成了一个主要的健康挑战,导致激烈的研究努力集中在新的抗微生物化合物的发现。在这项研究中,从属于大戟属家庭的砂脂血管植物(叶子,木材和乳胶)的不同部分中分离了内心体,并已知产生抗微生物化合物,并使用分子网络化学表征以发现新的抗微生物分子。从S. Guyanensis乳胶获得的一个真菌内体提取物显示出显着的抗微生物活性,在16μg/ ml的甲氧西林抗性葡萄球菌上的抑制浓度最小。这种真菌(LeCanicillium Genus)提取物的化学研究导致了5个Stephensiolides化合物的分离,其中四个表现出抗菌活性。 Stephensiolide I和G分别在MRSA上显示出最高的抗菌活性,分别在4和16μg/ mL处具有MIC。

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