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The development of an asymmetric Morita-Baylis-Hillman reaction and application toward the total synthesis of pycnanthuquinone A.

机译:不对称Morita-Baylis-Hillman反应的发展及在吡喃醌A的全合成中的应用。

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摘要

In an effort to discover novel treatments for type 2 diabetes, pycnanthuquinone A was isolated from the leaves of a West African tree. The compound demonstrated excellent antihyperglycemic activity in diabetes model mice. However, the biological target remains unknown and no chemical synthesis of the natural product has been reported. We sought to complete an enantioselective route by developing and implementing an asymmetric Morita-Baylis-Hillman (MBH) reaction of cyclopentenone with aryl aldehydes.;The MBH reaction is a carbon-carbon bond forming reaction defined as the condensation of activated alkenes with aldehydes via tertiary amine or phosphine promoters. An enantioselective Bronsted acid-catalyzed method was developed using BINOL derivatives that induced high levels of enantioinduction. Kinetics were investigated via in situ IR monitoring, and the reaction was found to have a first order dependence with respect to catalyst. Additionally, a linear relationship between catalyst and product enantioratios was observed. 31P-NMR and direct inject mass spectral studies provided further evidence for the reaction mechanism. Based on these results, the catalyst is proposed to be intimately involved in the catalytic cycle and play several roles, including: activation of the ketone toward conjugate addition, stabilization of the zwitterionic intermediate, activation of the aldehyde toward aldol addition and assistance in proton transfer.;The application of this methodology was investigated in synthetic studies of pycnanthuquinone A. Conjugate addition to the MBH adduct resulted in elimination of the alcohol stereocenter, through a rapid addition-E1cb sequence. Functional group transformation of the cyclopentenone carbonyl to a leaving group allowed for addition of nucleophiles via allylic substitution, however, subsequent attempts at ring closure were unsuccessful.;Ring closure through reaction at the beta-position of the enone was also explored. Development of a novel method for coupling benzyne precursors with aldimines generated benzaldehyde derivatives with methylene ester substituents at the ortho-position. These substrates underwent successful reaction with phosphine to form the MBH adducts. Reaction with base deprotonated the benzylic position and generated the desired tricyclic pycnanthuquinone core via two routes: conjugate addition-elimination as observed in the intermolecular case, or, under suppressed temperatures, aldol addition formed the [6,6,5] tricycle with the sensitive secondary alcohol still intact.
机译:为了发现2型糖尿病的新疗法,从西非树的叶子中分离出了吡喃醌A。该化合物在糖尿病模型小鼠中显示出优异的降血糖活性。然而,生物学目标仍然未知,并且尚未报道天然产物的化学合成。我们试图通过开发和实施环戊烯酮与芳基醛的不对称Morita-Baylis-Hillman(MBH)反应来完成对映选择性的路线; MBH反应是一种碳-碳键形成反应,定义为活化的烯烃与醛的缩合反应叔胺或膦促进剂。使用诱导高水平对映体诱导的BINOL衍生物开发了对映选择性布朗斯台德酸催化方法。通过原位IR监测动力学,发现该反应对催化剂具有一级依赖性。另外,观察到催化剂与产物对映体之间的线性关系。 31 P-NMR和直接进样质谱研究为反应机理提供了进一步的证据。基于这些结果,提出该催化剂与催化循环密切相关并起几个作用,包括:酮向共轭物加成的活化,两性离子中间体的稳定,醛向醛醇加成的活化和在质子转移中的辅助作用。该方法的应用已在吡喃醌A的合成研究中进行了研究。通过快速添加-E1cb序列,共轭添加到MBH加合物中可消除醇的立体中心。环戊烯酮羰基向离去基团的官能团转化允许通过烯丙基取代添加亲核试剂,但是随后的闭环尝试均未成功。还研究了通过烯酮β位反应的闭环。开发一种将苯炔前体与醛亚胺偶合的新方法,该方法可生成邻位带有亚甲基酯取代基的苯甲醛衍生物。这些底物与膦成功反应形成MBH加合物。与碱的反应使苄基位置去质子化,并通过两种途径生成所需的三环吡喃蒽醌核:如在分子间情况下观察到的共轭加成消除,或在抑制的温度下,醛醇加成形成了具有敏感性的[6,6,5]三环仲醇仍然完好无损。

著录项

  • 作者

    Wensley, Allison M.;

  • 作者单位

    Boston University.;

  • 授予单位 Boston University.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 243 p.
  • 总页数 243
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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