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Palladium-catalyzed allylic-arylation: Mechanistic studies and application to the total synthesis of (+/-)-7-deoxypancratistatin derivatives.

机译:钯催化的烯丙基芳基化:机理研究及其在(+/-)-7-脱氧潘克拉斯汀衍生物的全合成中的应用。

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摘要

Palladium-catalyzed carbon-carbon bond formation is one of the most widely used reactions for the synthesis of biologically active substances. The DeShong group has demonstrated that hypervalent silicates can be employed for allyl-aryl carbon-carbon bond couplings in the presence of a Pd(0) catalyst. The goals of this dissertation are (1) to demonstrate application of palladium-catalyzed allylic-arylation coupling to the total synthesis of (+/-)-7-deoxypancratistatin and its analogues, and (2) to study the mechanism of allyl-aryl cross coupling reactions.;In spite of the potent antitumor and antiviral activity of (+)-7-deoxypancratistatin, the use of this compound is limited in clinical applications because of its low natural abundance and lack of a practical scalable synthetic route. In order to test the feasibility of siloxane-based coupling in the synthesis of 7-deoxypancratistatin, a simplified analogue of (+/-)-7-deoxypancratistatin was synthesized. The key reaction in the synthesis involved stereoselective construction of a carbon-carbon bond between A and C rings via coupling of an aryl siloxane with an allylic carbonate.;While siloxane methodology was successfully applied to the synthesis of a (+/-)-7-deoxypancratistatin analogue, application of this methodology to the natural product (+/-)-7-deoxypancratistatin proved to be a significant challenge. To understand the causes of the failure of the coupling reaction, a detailed mechanistic study was undertaken. Hammett analysis of the allyl-aryl coupling reaction demonstrated that the rate of the coupling reaction was enhanced by electron-withdrawing groups on the aryl siloxane. The positive slope of the Hammett plot indicated a charged transition state in which negative charge on the aryl ring was stabilized inductively. Furthermore, this study provided useful information regarding the nature of ligands on the palladium. Based on this study, a new family of Pd(0) olefin catalysts was developed. These catalysts were found to be highly efficient and formed carbon-carbon bond even at ambient temperature.;Novel Pd(0) olefin complexes were successfully employed in the synthesis of (+/-)-7-deoxypancratistatin. The key coupling reaction of allylic carbonate with aryl siloxane produced Hudlicky's intermediate, thus constituting formal total synthesis of the actual product. Though the reaction required higher catalytic loading and proceeded in moderate yields, the ability of the reaction to work at ambient temperature is advantageous for practical synthesis of the natural product. Future studies shall aim at optimization of the key coupling reaction and application of this methodology to the synthesis of pancratistatin and related derivatives.
机译:钯催化的碳-碳键形成是生物活性物质合成中使用最广泛的反应之一。 DeShong基团证明,在Pd(0)催化剂存在下,高价硅酸盐可用于烯丙基-芳基碳-碳键偶联。本文的目的是(1)证明钯催化的烯丙基芳基化偶联在(+/-)-7-脱氧潘克拉汀及其类似物的全合成中的应用,以及(2)研究烯丙基-芳基的机理尽管(+)-7-deoxypancratistatin具有强大的抗肿瘤和抗病毒活性,但由于其天然丰度低和缺乏实用的可扩展合成途径,因此该化合物在临床应用中受到限制。为了测试基于硅氧烷的偶联在7-脱氧胰​​抑素合成中的可行性,合成了(+/-)-7-脱氧胰​​抑素的简化类似物。合成过程中的关键反应涉及通过芳基硅氧烷与烯丙基碳酸酯的偶合,在A和C环之间建立立体选择性的碳-碳键。虽然硅氧烷方法已成功应用于(+/-)-7的合成-deoxypancratistatin类似物,这种方法应用于天然产物(+/-)-7-deoxypancratistatin证明是一项重大挑战。为了理解偶联反应失败的原因,进行了详细的机理研究。烯丙基-芳基偶联反应的Hammett分析表明,芳基硅氧烷上的吸电子基团提高了偶联反应的速率。哈米特图的正斜率表示带电跃迁状态,其中芳基环上的负电荷被感应稳定。此外,这项研究提供了有关钯上配体性质的有用信息。基于此研究,开发了一种新的Pd(0)烯烃催化剂系列。发现这些催化剂是高效的并且甚至在环境温度下也形成了碳-碳键。新颖的Pd(0)烯烃络合物被成功地用于(+/-)-7-脱氧潘克拉汀的合成。烯丙基碳酸酯与芳基硅氧烷的关键偶联反应产生Hudlicky中间体,因此构成了实际产物的正式全合成。尽管该反应需要较高的催化负荷并以中等收率进行,但是该反应在环境温度下进行的能力对于天然产物的实际合成是有利的。未来的研究应致力于关键偶联反应的优化,以及该方法在潘克拉斯汀及其相关衍生物合成中的应用。

著录项

  • 作者

    Shukla, Krupa H.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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