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与海蒿子(Linnaeus)Sauvageau 相关的海洋内生真菌作为具有潜在皮肤化妆品应用的生物活性次生代谢产物的生产者。

Marine endophytic fungi associated with Halopteris scoparia (Linnaeus) Sauvageau as producers of bioactive secondary metabolites with potential dermocosmetic application.

机构信息

MARE-Marine and Environmental Sciences Centre, Polytechnic of Leiria, Peniche, Portugal.

MARE-Marine and Environmental Sciences Centre, ESTM, Polytechnic of Leiria, Peniche, Portugal.

出版信息

PLoS One. 2021 May 13;16(5):e0250954. doi: 10.1371/journal.pone.0250954. eCollection 2021.

Abstract

Marine fungi and, particularly, endophytic species have been recognised as one of the most prolific sources of structurally new and diverse bioactive secondary metabolites with multiple biotechnological applications. Despite the increasing number of bioprospecting studies, very few have already evaluated the cosmeceutical potential of marine fungal compounds. Thus, this study focused on a frequent seaweed in the Portuguese coast, Halopteris scoparia, to identify the endophytic marine fungi associated with this host, and assess their ability to biosynthesise secondary metabolites with antioxidative, enzymatic inhibitory (hyaluronidase, collagenase, elastase and tyrosinase), anti-inflammatory, photoprotective, and antimicrobial (Cutibacterium acnes, Staphylococcus epidermidis and Malassezia furfur) activities. The results revealed eight fungal taxa included in the Ascomycota, and in the most representative taxonomic classes in marine ecosystems (Eurotiomycetes, Sordariomycetes and Dothideomycetes). These fungi were reported for the first time in Portugal and in association with H. scoparia, as far as it is known. The screening analyses showed that most of these endophytic fungi were producers of compounds with relevant biological activities, though those biosynthesised by Penicillium sect. Exilicaulis and Aspergillus chevalieri proved to be the most promising ones for being further exploited by dermocosmetic industry. The chemical analysis of the crude extract from an isolate of A. chevalieri revealed the presence of two bioactive compounds, echinulin and neoechinulin A, which might explain the high antioxidant and UV photoprotective capacities exhibited by the extract. These noteworthy results emphasised the importance of screening the secondary metabolites produced by these marine endophytic fungal strains for other potential bioactivities, and the relevance of investing more efforts in understanding the ecology of halo/osmotolerant fungi.

摘要

海洋真菌,尤其是内生真菌,已被认为是结构新颖、多样化的生物活性次生代谢产物的最丰富来源之一,具有多种生物技术应用。尽管生物勘探研究的数量不断增加,但很少有研究已经评估了海洋真菌化合物的化妆品潜力。因此,本研究集中在葡萄牙海岸常见的海藻 Halopteris scoparia 上,以鉴定与该宿主相关的内生海洋真菌,并评估它们合成具有抗氧化、酶抑制(透明质酸酶、胶原酶、弹性蛋白酶和酪氨酸酶)、抗炎、光保护和抗菌(痤疮丙酸杆菌、表皮葡萄球菌和糠秕马拉色菌)活性的次生代谢产物的能力。结果表明,有 8 个真菌分类群被归入子囊菌门,并属于海洋生态系统中最具代表性的分类类群(子囊菌纲、盘菌纲和腔菌纲)。这些真菌在葡萄牙和与 H. scoparia 相关的报道是首次报道,就目前所知。筛选分析表明,这些内生真菌大多是具有相关生物活性化合物的产生者,但 Penicillium sect. Exilicaulis 和 Aspergillus chevalieri 产生的化合物最有前途,可进一步由皮肤化妆品行业开发利用。对 A. chevalieri 分离株的粗提取物的化学分析表明,存在两种生物活性化合物,即节球菌素和新节球菌素 A,这可能解释了提取物表现出的高抗氧化和 UV 光保护能力。这些值得注意的结果强调了筛选这些海洋内生真菌菌株产生的次生代谢产物的重要性,以寻找其他潜在的生物活性,并强调了加大努力理解耐盐/耐渗透压真菌生态学的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a723/8118457/f17920affacb/pone.0250954.g001.jpg

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