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The natural products chemistry of marine ascidians: Structural elucidation and molecular modeling studies of novel secondary metabolites.

机译:海洋海鞘的天然产物化学:新型次生代谢产物的结构阐明和分子模型研究。

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摘要

Ascidians are well-known producers of amino acid-derived secondary metabolites. Recent chemical and biological investigations of taxonomically diverse ascidians have revealed a variety of pharmacologically potent natural products and the importance of these metabolites in the survival of physically vulnerable ascidians in predator-rich habitats. However, at issue are the real sources of novel secondary metabolites isolated from marine ascidians, which are related to symbiosis due to complex associations of the ascidians with microbial symbionts. Furthermore, rapidly developing resistance of infectious diseases and cancers toward traditional antibiotics and anti-cancer drug needs unprecedented novel natural products. Despite great advance in separation science, marine natural products research in ascidians was relatively limited to nonpolar compounds. Furthermore, the aquatic environment implicates the significance of hydrophilic molecules in defensive adaptations and symbiosis. Therefore, the main objective of this research was to investigate biosynthetic diversity and limitation of ascidian secondary metabolism with emphasis of identification of hydrophilic bioactive molecules and unprecedented carbon skeletons. In this way, a broader understanding of ascidian secondary metabolism, and a chemical data base for studies of chemical ecology, could be established.; A variety of chromatographic methods, such as high performance liquid chromatography and high speed countercurrent chromatography, were used to isolate polar compounds. Extensive spectroscopic techniques, including a variety of two-dimensional NMR experiments and mass spectrometric methods as well as computer-molecular modeling, were utilized to elucidate their structures.; This research resulted in the structural elucidation of 25 new secondary metabolites in 10 different structural classes, including 8 new carbon skeletons from marine sources. A high diversity of chemical structures along with various bioactivities, such as cytotoxicity against colon cancer cells, antimicrobial activity, and antiinflammatory activity, were demonstrated. Several natural products showed cytotoxic activities directed against a drug-resistant human colon cell line, HCT 116. Some of these compounds are known to inhibit an enzyme which is frequently used as a chemotherapeutic target. In addition to them, some had antibacterial and antiinflammatory activities. However, not every compound was bioactive. Perhaps some of them may explain the chemical defense mechanism of marine ascidians against predators.
机译:海鞘是氨基酸衍生的次级代谢产物的众所周知的生产者。最近对分类学上不同的海生动物进行的化学和生物学研究表明,多种药理学有效的天然产物以及这些代谢物在捕食者丰富的栖息地中身体脆弱的海生动物的生存中具有重要意义。然而,有争议的是从海洋海鞘中分离出的新型次生代谢产物的真正来源,这与由于海鞘与微生物共生体的复杂关联而引起的共生有关。此外,传染病和癌症对传统抗生素和抗癌药的快速发展的抗药性需要空前的新型天然产物。尽管分离科学取得了长足的进步,但海鞘中海洋天然产物的研究相对限于非极性化合物。此外,水生环境暗示了亲水分子在防御适应和共生中的重要性。因此,本研究的主要目的是研究生物合成多样性和海鞘次级代谢的局限性,重点是鉴定亲水性生物活性分子和空前的碳骨架。这样,可以建立对海鞘次级代谢的更广泛理解,并建立用于化学生态学研究的化学数据库。多种色谱方法,例如高效液相色谱法和高速逆流色谱法,被用于分离极性化合物。广泛的光谱技术,包括各种二维NMR实验和质谱方法以及计算机分子模型,被用来阐明它们的结构。这项研究的结果是对10种不同结构类别中的25种新的次生代谢产物进行了结构解析,其中包括8种来自海洋的新碳骨架。证明了高度多样化的化学结构以及各种生物活性,例如对结肠癌细胞的细胞毒性,抗微生物活性和抗炎活性。几种天然产物显示出针对抗药性人类结肠细胞系HCT 116的细胞毒性活性。已知其中一些化合物可抑制经常用作化学治疗靶标的酶。除了它们,还有一些具有抗菌和消炎作用。但是,并非每种化合物都具有生物活性。也许其中一些可以解释海洋海生动物对天敌的化学防御机制。

著录项

  • 作者

    Kang, Heonjoong.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Chemistry Organic.; Chemistry Pharmaceutical.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 237 p.
  • 总页数 237
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;药物化学;
  • 关键词

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