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Investigations into novel applications of the ketone-catalyzed asymmetric epoxidation and progress toward the asymmetric total synthesis of merrilactone A.

机译:酮催化不对称环氧化的新应用研究以及迈利内酯A的不对称全合成进展。

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摘要

The generation of enantiomerically pure compounds has been a constant challenge for organic chemists. The ability to synthesize a single enantiomer of a desired compound is of extreme importance for biologically active compounds. Oftentimes only one of a pair of enantiomers is biologically active, while the other is either inactive or deleterious. Enantioselective processes, especially those that are catalytic, have come to the forefront in today's synthetic laboratories, and catalytic asymmetric epoxidation reactions are no exception to this. Recently, an efficient asymmetric epoxidation method for simple, unfunctionalized olefins was reported using a fructose-derived ketone as catalyst and Oxone as oxidant. The use of this method for the asymmetric epoxidation of 2,2-disubstituted vinylsilanes has been investigated. The enantioselectivity of the reaction was found to be high in most cases. Following epoxidation, the substrates were desilylated to provide the corresponding 1,1-disubstituted terminal epoxides without loss optical purity.; The epoxidation of tryptophan derivatives has also been studied. It was found that these substrates do not readily participate in the asymmetric epoxidation, however limited results were obtained in the racemic epoxidation when the indole nitrogen of N-α-Boc-DL-tryptophan methyl ester was properly masked.; A novel ketone for use in the asymmetric epoxidation was also investigated. While the final target remained elusive, an interesting chelation effect was uncovered during the addition of organocerium and organolithium reagents to an advanced intermediate.; Finally, the total synthesis of the natural product merrilactone A was intensely studied. Merrilactone A has been shown to exhibit significant neurotrophic activity, such as greatly promoting neurite outgrowth in the primary cultures of fetal rat cortical neurons at concentrations from 10 μmol/L to 0.1 μmol/L. It consists of a densely functionalized pentacyclic ring system featuring two fused γ-lactones and an oxetane ring. Key steps accomplished in the synthesis include a reagent-controlled stereoselective aldol reaction followed by substrate-controlled addition of vinyl lithium to the resulting β-hydroxyketone upon MOM protection of the newly formed alcohol.
机译:对映体纯的化合物的产生一直是有机化学家一直面临的挑战。合成所需化合物的单个对映异构体的能力对于生物活性化合物极为重要。通常,一对对映异构体中只有一个具有生物活性,而另一个对映异构体则是无活性或有害的。对映选择性过程,特别是催化过程,在当今的合成实验室中已经走到了最前沿,催化不对称环氧化反应也不例外。近来,已经报道了使用果糖衍生的酮作为催化剂并使用Oxone作为氧化剂的简单,未官能化烯烃的有效不对称环氧化方法。已经研究了将该方法用于2,2-二取代的乙烯基硅烷的不对称环氧化。在大多数情况下,发现该反应的对映选择性很高。环氧化后,将底物去甲硅烷基化以提供相应的1,1-二取代的末端环氧化物,而不会损失光学纯度。还研究了色氨酸衍生物的环氧化。发现这些底物不容易参与不对称环氧化,但是当 N -α-Boc- DL 的吲哚氮时,外消旋环氧化的结果有限。 -色氨酸甲酯被适当地掩盖。还研究了用于不对称环氧化的新型酮。虽然最终目标仍然难以捉摸,但在向高级中间体中添加有机铈和有机锂试剂的过程中,未发现有趣的螯合作用。最后,对天然产物merrilactone A的全合成进行了深入研究。已显示,巯基内酯A表现出显着的神经营养活性,例如以10μmol/ L至0.1μmol/ L的浓度在胎鼠皮质神经元的原代培养物中极大地促进神经突向外生长。它由具有两个稠合的γ-内酯和一个氧杂环丁烷环的致密官能化的五环系统组成。合成中完成的关键步骤包括试剂控制的立体选择性醛醇缩合反应,然后在MOM保护新形成的醇之后,将底物控制的乙烯基锂加到所得的β-羟基酮中。

著录项

  • 作者

    Warren, James David.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 262 p.
  • 总页数 262
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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