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Marine biotechnology : evaluation and development of methods for the discovery of natural products from fungi

机译:海洋生物技术:评估和开发从真菌中发现天然产物的方法

摘要

One of the major impediments in the development of marine natural products is the provision of biologically active natural products in sufficient quantity for complete pharmacological evaluation, clinical trials and eventual commercial production. Marine microorganisms show great promise in providing a renewable source of biologically active natural products. The main aim of this study was to develop and evaluate methods for the isolation, identification and cultivation of marine fungi from the South African marine environment for the production of biologically active secondary metabolites. Twenty-four species of fungi were isolated from marine algae collected from the intertidal zone near Port Alfred, South Africa. The fungi were cultivated in small-scale under static and agitated conditions and their crude intra- and extracellular organic extracts were screened by ¹H NMR and a series of bioassays. Using this as a basis, one isolate was selected for further study. By analyses of the lTS1 region of the ribosomal DNA, the fungal isolate was identified as a marine-derived isolate of Eurotium rubrum (Aspergillus ruber). Although E. rubrum has been isolated from the marine environment, no investigations have been undertaken to determine the adaptation of these isolates to the marine environment. In order to optimise productivity, creativity and incubation time, the fungus was cultivated in small-scale using a variety of carbon (glucose, fructose, lactose, sucrose, marmitol and maltose) and nitrogen sources (ammonium tartrate, urea, peptone and yeast extract). An HPLC-DAD method was developed to assess the metabolic creativity and productivity under different fermentation conditions. Distinctive variations in the range and yield of metabolites produced as well as morphology and growth time were observed. The crude extracts from all fermentations were combined and six known compounds were isolated by reversed-phase chromatography and their structures elucidated by spectroscopic techniques. The known compounds were fIavoglaucin, aspergin, isodihydroauroglaucin, isotetrahydroauroglaucin, neoechinuline A and physcion. Neoechinuline A, isodihydroauroglaucin and isotetrahydroauroglaucin showed activity against oesophageal and cervical cancer cell lines.
机译:海洋天然产物开发的主要障碍之一是提供足够数量的生物活性天然产物,以进行完整的药理评估,临床试验以及最终的商业生产。海洋微生物在提供生物活性天然产物的可再生来源方面显示出巨大的希望。这项研究的主要目的是开发和评估从南非海洋环境中分离,鉴定和培养海洋真菌以生产具有生物活性的次生代谢产物的方法。从南非阿尔弗雷德港附近潮间带收集的海藻中分离出二十四种真菌。真菌在静态和搅拌条件下进行小规模培养,并通过1 H NMR和一系列生物测定法筛选其粗制的细胞内和细胞外有机提取物。以此为基础,选择了一种分离株进行进一步研究。通过分析核糖体DNA的lTS1区,该真菌分离株被鉴定为海洋来源的rub(Aspergillus ruber)分离株。尽管已经从海洋环境中分离出了大肠埃希氏菌,但尚未进行任何调查来确定这些分离株对海洋环境的适应性。为了优化生产力,创造力和孵育时间,使用各种碳(葡萄糖,果糖,乳糖,蔗糖,果糖醇和麦芽糖)和氮源(酒石酸铵,尿素,蛋白ept和酵母提取物)进行小规模种植。 )。开发了HPLC-DAD方法来评估不同发酵条件下的代谢创造力和生产率。观察到所产生的代谢产物的范围和产量以及形态和生长时间的明显差异。合并来自所有发酵的粗提取物,并通过反相色谱分离六种已知化合物,并通过光谱技术阐明其结构。已知的化合物是氟格古霉素,曲霉精,异二氢金红霉素,异四氢金红霉素,新七氢呋喃A和physcion。新棘霉素A,异二氢金红霉素和异四氢金红霉素对食管和宫颈癌细胞系均具有活性。

著录项

  • 作者

    Pather Simisha;

  • 作者单位
  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 English
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