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从一种独特的 sp. 真菌的菌丝体培养物中发现抗真菌和生物膜预防化合物。

Discovery of Antifungal and Biofilm Preventative Compounds from Mycelial Cultures of a Unique sp. Fungus.

机构信息

Center for Drug Design, University of Minnesota, Minneapolis, MN 55455, USA.

Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Molecules. 2020 Feb 20;25(4):963. doi: 10.3390/molecules25040963.

Abstract

Edible mushrooms are an important source of nutraceuticals and for the discovery of bioactive metabolites as pharmaceuticals. In this work, the OSMAC (One Strain, Many Active Compounds) approach was used to isolate two new compounds ( and ) along with seven known compounds (-) from a mycelial culture of a unique North American edible mushroom sp. The fruiting body was collected in Marine on St. Croix, Minnesota (USA), and mycelial cultures were grown on four different solid and liquid media. Extracts from the mycelial cultures were screened for antimicrobial activity and only the extract from the Cheerios substrate culture exhibited antifungal activity. Bioassay guided fractionation and HPLC analysis were used to isolate nine pure compounds and the structures of the known compounds were established by analysis of the NMR and mass spectrometry data and comparison to published reports. Compound is a new erinacerin alkaloid and is an aldehyde derivative of 4-hydroxy chroman. Four chlorinated orcinol derivatives (-), a pyran (), erinaceolactone (), and erinacine () were identified. Compound showed antifungal activity against and (MIC = 31.3-62.5 μg/mL, respectively). Compound also inhibited biofilm formation of and at 7.8 μg/mL. These results suggest that mycelial cultures of edible fungi may provide useful, bioactive compounds.

摘要

食用蘑菇是营养药物的重要来源,也是发现生物活性代谢物作为药物的重要来源。在这项工作中,采用 OSMAC(一种菌株,多种活性化合物)方法,从一种独特的北美可食用蘑菇 sp. 的菌丝体培养物中分离出两种新化合物(和)以及七种已知化合物(-)。子实体在明尼苏达州海洋城(美国)收集,在四种不同的固体和液体培养基上培养菌丝体。从菌丝体培养物中提取的提取物进行了抗微生物活性筛选,只有在 Cheerios 基质培养物上的提取物表现出抗真菌活性。生物测定指导的分级分离和 HPLC 分析用于分离出九种纯化合物,通过分析 NMR 和质谱数据以及与已发表报告的比较确定了已知化合物的结构。化合物 是一种新的埃里纳辛生物碱,化合物 是 4-羟基色满的醛衍生物。鉴定出四个氯化或卡宁衍生物(-)、一个吡喃()、埃里纳醇酮()和埃里纳辛()。化合物 对 和 表现出抗真菌活性(MIC = 31.3-62.5 μg/mL)。化合物 还抑制 和 的生物膜形成,浓度为 7.8 μg/mL。这些结果表明,食用真菌的菌丝体培养物可能提供有用的、具有生物活性的化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60fa/7070493/c3b2b3c8cdfc/molecules-25-00963-g001.jpg

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