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Microwave-Accelerated Transformations in Synthetic Organic & Medicinal Chemistry.

机译:合成有机和药物化学中的微波加速转化。

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摘要

Microwave assisted organic syntheses have evolved from pioneering work conducted in the 1980's to become a central feature of contemporary organic chemistry. Though initial research was conducted using modified domestic instruments, a variety of sophisticated reactors are now available, and the technology has been adopted widely throughout the pharmaceutical industry. Based on dielectric heating, microwave mediated synthetic transformations exploit the ability to achieve very carefully controlled yet rapid application of thermal energy, which typically results in faster reaction rates and improved product impurity profiles. The research described herein highlights powerful new applications of microwave assisted organic synthesis with particular emphasis on radiolabeling methodologies. In this arena, the full benefits of fast reaction rates are exploited as the methodology can allow practical routes to short half-life radiopharmaceuticals otherwise inaccessible by conventional means. Following a review of the field, Chapter 2 describes microwave mediated fluorodenitration of nitroarenes. In addition to providing access to an array of fluoroarene building blocks for organic and medicinal chemistry, the methodology is extended to the introduction of 18F labeled products. The latter are of importance in the rapidly emerging field of positron emission tomography (PET) imaging, and the reaction times are compatible with the half-life of this positron emitting nuclide, rendering this methodology suitable for adoption in biomedical and clinical imaging. Chapter 3 describes application of microwave mediated cross coupling of substituted arenes with a variety of carbon based electrophiles. Exploiting the power of microwave irradiation in the presence of transition metal catalysts allowed access to products otherwise accessible by conventional methods. Furthermore, by careful choice of substrate, in situ coupling followed by tandem fluorination could be achieved. This one pot, three component methodology provides facile access to libraries of heavily functionalized arene products, including analogs of clinical candidates for PET imaging, where lipophilicity can be readily modulated as desired. In Chapter 4, the application of microwave thermolysis is harnessed in the synthesis of members of the xanthine class of heterocycles. A key feature of the methodology involves a novel catalyzed annulation, and the process provides access to libraries of functionalized xanthines, including inhibitors of the adenosine A2A receptor. Chapter 5 explores the use of fluorinated tags, prepared using microwave methodology, for the labeling of peptides, proteins, and antibodies. Applications of these methodologies can be expected through in vivo imaging, allowing biodistribution of the parent biogenic molecule to be studied in real time. Incorporation of aspects of the methodology in the undergraduate chemistry laboratory is also described, together with emerging collaborations with industrial partners.
机译:微波辅助的有机合成已从1980年代进行的开创性工作发展成为当代有机化学的主要特征。尽管使用改良的家用仪器进行了初步研究,但现在可以使用各种复杂的反应器,并且该技术已在整个制药行业广泛采用。基于介电加热,微波介导的合成转化利用了实现非常仔细地控制但快速施加热能的能力,这通常导致更快的反应速率和改善的产物杂质分布。本文所述的研究突出了微波辅助有机合成的强大新应用,尤其着重于放射性标记方法。在这个领域,由于该方法可以使实际途径缩短半衰期放射性药物的方法,否则将无法利用常规方法获得快速反应速率的全部好处。在对该领域进行回顾之后,第二章介绍了微波介导的硝基芳烃的氟脱氮。除了提供用于有机和药物化学的一系列氟代芳烃构建基块之外,该方法还扩展为引入18F标记的产品。后者在迅速兴起的正电子发射断层扫描(PET)成像领域中至关重要,反应时间与该正电子发射核素的半衰期兼容,从而使该方法适用于生物医学和临床成像。第3章介绍了微波介导的取代芳烃与多种碳基亲电试剂的交叉偶联的应用。在过渡金属催化剂的存在下利用微波辐射的能量可以得到常规方法可以得到的产物。此外,通过仔细选择底物,可以实现原位偶联,然后进行串联氟化。这种一锅三成分的方法可以轻松访问功能强大的芳烃产品库,包括用于PET成像的临床候选药物的类似物,亲脂性可根据需要轻松调节。在第四章中,微波热解的应用被用于黄嘌呤类杂环的合成。该方法的关键特征涉及新颖的催化环化,该方法提供了进入功能化黄嘌呤文库的途径,其中包括腺苷A2A受体抑制剂。第5章探讨了使用微波方法制备的氟化标签在肽,蛋白质和抗体上的标记。可以通过体内成像期待这些方法的应用,从而可以实时研究亲本生物分子的生物分布。还描述了该方法论在本科化学实验室中的整合,以及与行业合作伙伴的新兴合作。

著录项

  • 作者

    Kallmerten, Amy Elaine.;

  • 作者单位

    Northeastern University.;

  • 授予单位 Northeastern University.;
  • 学科 Chemistry Organic.;Chemistry Pharmaceutical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 236 p.
  • 总页数 236
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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