首页> 外文学位 >I. Synthesis of N,N-bis(3-butenyl)amines from (2-azaallyl)nitriles. II. Synthesis of highly substituted pyrrolizidines from cyclic carbinol amides. III. Synthesis of potential phototriggered DNA crosslinking agents.
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I. Synthesis of N,N-bis(3-butenyl)amines from (2-azaallyl)nitriles. II. Synthesis of highly substituted pyrrolizidines from cyclic carbinol amides. III. Synthesis of potential phototriggered DNA crosslinking agents.

机译:I.由(2-氮杂烯丙基)腈合成N,N-双(3-丁烯基)胺。二。由环状甲醇酰胺合成高度取代的吡咯烷核苷。三,潜在的光触发DNA交联剂的合成。

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摘要

The formation of nitrogen-containing molecules is of great importance in synthetic organic chemistry owing to the abundance of alkaloids that exhibit biological activity. While the first two projects deal with expanding the synthetic tools available for synthesis of such compounds, the final project focuses on using existing methodology to create and test novel potential clinical agents.;The use of (2-azaallyl)nitriles in double allylation reactions with allylmagnesium bromide to generate N, N-bis(3-butenyl)amines is described. The (2-azaallyl)nitriles function as synthetic equivalents of amine alpha,alpha'-dications, also called 2-azaallyl dications. This chemistry allows for the expeditious construction of highly substituted amines, resulting in the formation of two new carbon-carbon bonds adjacent to the nitrogen atom. The doubly allylated products are converted to 2,3,6,7-tetrahydroazepines by ring-closing metathesis. Many biologically-active natural products contain the azepine ring, so facile methods for its formation provide valuable synthetic tools.;Also discussed is the formation of pyrrolizidines from N-(tri- n-butylstannyl)methylphthalimides. Through nucleophilic addition of an organometallic reagent, the phthalimides could be converted to cyclic carbinol amides, which were shown to undergo ionization and destannylation under acidic conditions to generate azomethine ylides. Inclusion of a suitable dipolarophile resulted in capture of the azomethine ylide to provide the pyrrolizidine. Various substituents on the phthalimide were tolerated by this methodology, and stabilized succinimide derivatives also underwent successful cycloadditions. Given the large number of biologically-active natural products that possess the pyrrolizidine ring structure, this chemistry could find wide synthetic application.;Finally, the preparation of 2-(2,5-dihydropyrrol-1-yl)-1,4-quinones by the coupling of quinones with pyrrolines is discussed. The 2-(2,5-dihydropyrrol-1-y1)-1,4-quinones were designed to be masked alkylating agents, revealed upon exposure to light. The pyrroline of the 2-(2,5-dihydropyrrol-1-yl)-1,4-quinones is relatively unreactive toward nucleophiles, but upon photolysis, an internal oxidation/reduction reaction occurs, transforming the quinone into a hydroquinone and the pyrroline into a pyrrole. The newly-formed pyrrole is highly electrophilic and readily undergoes an alkylation reaction. Eventually, the presence of oxygen may reoxidize the hydroquinone to a quinone. The design of such photoactivatable alkylating agents is a worthwhile endeavor because it provides a handle for control of the alkyation, thereby making it more attractive as a potential clinical agent.
机译:含氮分子的形成在合成有机化学中非常重要,因为它具有丰富的生物活性。虽然前两个项目致力于扩展可用于合成此类化合物的合成工具,但最后一个项目着重于使用现有方法来创建和测试新型潜在的临床药物。(2-氮杂烯丙基)腈在双烯丙基化反应中的应用描述了产生N,N-双(3-丁烯基)胺的烯丙基溴化镁。 (2-氮杂烯丙基)腈作为胺α,α'-指示剂的合成等效物,也称为2-氮杂烯丙基指示剂。这种化学性质可以快速构建高度取代的胺,从而导致在氮原子附近形成两个新的碳-碳键。通过闭环复分解将双烯丙基化产物转化为2,3,6,7-四氢hydro庚因。许多具有生物活性的天然产物都含有氮杂环丁烷环,因此形成该环的简便方法提供了有价值的合成工具。还讨论了由N-(三-正丁基锡烷基)甲基邻苯二甲酰亚胺形成吡咯并核苷的方法。通过有机金属试剂的亲核加成,邻苯二甲酰亚胺可以转化为环状甲醇酰胺,表明在酸性条件下会发生电离和脱甲锡反应,生成甲亚胺基化物。包含合适的亲双极性体导致捕获了甲亚胺叶立德以提供吡咯烷核苷。该方法可以耐受邻苯二甲酰亚胺上的各种取代基,并且稳定的琥珀酰亚胺衍生物也经历了成功的环加成反应。鉴于具有吡咯嗪核环结构的大量具有生物活性的天然产物,该化学方法可以找到广泛的合成应用。最后,制备2-(2,5-二氢吡咯-1-基)-1,4-醌讨论了醌与吡咯啉的偶联。 2-(2,5-二氢吡咯-1-y-1)-1,4-醌被设计为掩蔽的烷基化剂,暴露于光线下会暴露出来。 2-(2,5-二氢吡咯-1-基)-1,4-醌的吡咯啉对亲核试剂相对不反应,但光解时发生内部氧化/还原反应,将醌转化为氢醌和吡咯啉变成吡咯。新形成的吡咯是高度亲电的,并且容易进行烷基化反应。最终,氧气的存在可能将对苯二酚重新氧化为醌。这种可光活化的烷基化剂的设计是值得努力的,因为它提供了控制烷基化的方法,从而使其作为潜在的临床剂更具吸引力。

著录项

  • 作者

    Dietz, Amber L.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 230 p.
  • 总页数 230
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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