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Marine natural products as antimicrobial chemical defenses and sources of potential drugs.

机译:海洋天然产物可作为抗菌化学防御剂和潜在药物的来源。

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摘要

Marine organisms including macroalgae, sponges, and other invertebrates, and microbes are widely recognized sources of an impressive array of structurally unusual compounds. Herein, I evaluate the hypothesis that macroalgal natural products play a role in defending these organisms against potentially pathogenic microbes in the marine environment. Further, I combine these ecology-driven investigations with evaluation of algal natural products as sources of novel human drugs. This combined approach resulted in discovery of 15 novel natural products from two tropical red algae, Callophycus serratus and an unidentified crustose red alga. These new molecules included seven novel carbon-carbon connectivity patterns, not previously reported in the synthetic or natural product literature, illustrating the abundance of secondary metabolite diversity among marine macroalgae. Further, many compounds exhibited both biomedical and ecological activities, suggesting the synergistic potential of combined biomedical/ecological investigations in providing drug leads as well as insights into the natural functions of secondary metabolites. Bromophycolides and callophycoic acids, natural products from C. serratus, inhibited growth of the marine fungal pathogen Lindra thalassiae. Spatially-resolved desorption ionization mass spectrometry (DESI-MS) revealed that these antifungal natural products were found at specific sites on algal surfaces. Finally, assessment of antimicrobial chemical defenses among extracts from 72 collections of tropical red algae revealed that nearly all algae were defended against at least one marine pathogen or saprophyte and further suggested the untapped potential of ecological investigations in the discovery of novel chemistry. Future investigations of chemically-mediated interactions between hosts and microbes will continue to increase understanding of these highly complex biological interactions and may provide valuable insights for drug discovery.
机译:包括大型藻类,海绵和其他无脊椎动物以及微生物在内的海洋生物是令人印象深刻的结构异常化合物的广泛来源。在本文中,我评估了以下假设:大型藻类天然产物在海洋环境中防御这些生物抵御潜在病原微生物的作用。此外,我将这些生态驱动的研究与藻类天然产物(作为新型人类药物的来源)的评估相结合。这种结合的方法从两种热带红藻,锯齿Callophycus serratus和一个未鉴定的硬壳红藻中发现了15种新颖的天然产物。这些新分子包括七个新颖的碳-碳连通性模式,以前在合成或天然产品文献中均未报道过,从而说明了海洋大型藻类中次生代谢物多样性的丰富性。此外,许多化合物同时具有生物医学和生态活性,这表明生物医学/生态学研究相结合的潜在协同作用可提供药物线索以及对次级代谢产物天然功能的深入了解。锯缘梭状芽胞杆菌的天然产物溴藻糖化物和愈伤组织酸抑制了海洋真菌病原体Lindra thalassiae的生长。空间分辨的解吸电离质谱(DESI-MS)显示,这些抗真菌天然产物发现于藻类表面的特定位置。最后,对72种热带红藻提取物中的抗菌化学防御能力进行评估后发现,几乎所有藻类均具有针对至少一种海洋病原体或腐生植物的防御能力,并进一步暗示了在新型化学发现中进行生态研究的潜力。未来对宿主与微生物之间化学介导的相互作用的研究将继续增加对这些高度复杂的生物相互作用的了解,并可能为药物发现提供有价值的见解。

著录项

  • 作者

    Lane, Amy L.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Biology Oceanography.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 203 p.
  • 总页数 203
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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