Visible Light-Enabled Synthesis of Heterocycles through Energy Transfer

通过能量转移可见光合成杂环

基本信息

项目摘要

Project Summary/Abstract Azetidines, azetines, and oxetanes are four-membered heterocycles that exhibit desirable pharmacokinetic effects and represent important building blocks in current medicinal chemistry. Cycloaddition reactions between alkenes and imines or carbonyls, also referred to as (aza) Paternò-Büchi reactions, represent the most direct synthetic approach to access these compounds, however the current utility of these transformations is highly restricted due to the stringent requirement of UV-light and competing reaction paths accessible upon photochemical excitation. Thus, the ability to incorporate functionalized azetidines, azetines, and oxetanes into pharmaceutical lead structures is currently severely limited due to a lack of efficient synthetic methods. To date, no visible light-based platform of general synthetic utility for cycloadditions between alkenes and imines or carbonyls exists. The objective of the proposed research program is to identify and develop chemical strategies that enable efficient cycloadditions between these functional groups to access azetidines, azetines, and oxetanes based on energy transfer catalysis facilitated by visible light. These new synthetic methods will provide general and modular protocols for the synthesis of a large variety of heterocyclic motifs that are highly desirable in current medicinal chemistry. Additionally, the strategies described will enable cycloaddition reactions between alkenes and imines or carbonyls under mild reaction conditions with high functional group tolerance as they forego the requirement of UV-light. The utility of the accessible 4-membered heterocycles as building blocks will be demonstrated in secondary modifications and by enabling the synthesis of biologically active target structures from commercially available starting materials. The compounds prepared within this research program will be incorporated into the compound library maintained by the Center for Chemical Genomics (CCG) at the University of Michigan and become part of high-throughput screening (HTS) approaches for biological research and new drug discovery projects. In summary, the research described will enable general, catalytic strategies for aza Paternò-Büchi and Paternò-Büchi reactions relying on energy transfer upon excitation with visible light. These new transformations represent desirable synthetic tools that will enable direct access to functionalized azetidines, azetines, and oxetanes, and are expected to have broad implications in the area of medicinal chemistry.
项目概要/摘要 氮杂环丁烷、氮杂环丁烷和氧杂环丁烷是四元杂环化合物,具有良好的药代动力学 作用并代表了当前药物化学的重要组成部分。环加成反应 烯烃和亚胺或羰基之间的反应,也称为 (aza) Paternò-Büchi 反应,代表 获取这些化合物的最直接的合成方法,但是这些化合物目前的效用 由于对紫外光和竞争反应路径的严格要求,转化受到高度限制 在光化学激发下可实现。因此,能够掺入官能化氮杂环丁烷、氮杂环丁烷、 由于缺乏有效的合成方法,目前将氧杂环丁烷引入药物先导结构受到严重限制。 方法。迄今为止,还没有基于可见光的通用合成平台用于烯烃之间的环加成 且存在亚胺或羰基。拟议研究计划的目标是确定和开发 能够在这些官能团之间进行有效环加成以获得氮杂环丁烷的化学策略, 基于可见光促进的能量转移催化的氮杂环丁烷和氧杂环丁烷。 这些新的合成方法将为合成多种化合物提供通用和模块化的方案。 当前药物化学中非常需要的杂环基序。此外,策略 所述的将能够在温和反应下实现烯烃与亚胺或羰基之间的环加成反应 具有高官能团耐受性的条件,因为它们放弃了紫外线的要求。的效用 可接近的四元杂环作为构建模块将在二次修饰和 通过从市售起始材料合成具有生物活性的目标结构。 本研究计划中制备的化合物将被纳入化合物库中 由密歇根大学化学基因组学中心 (CCG) 维护,并成为 用于生物研究和新药发现项目的高通量筛选(HTS)方法。 总之,所描述的研究将为 aza Paternò-Büchi 和 Paternò-Büchi 反应依赖于可见光激发下的能量转移。这些新 转化代表了理想的合成工具,可以直接获得官能化氮杂环丁烷, 氮杂环丁烷和氧杂环丁烷,预计将在药物化学领域产生广泛的影响。

项目成果

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Corinna Stefanie Schindler其他文献

Corinna Stefanie Schindler的其他文献

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{{ truncateString('Corinna Stefanie Schindler', 18)}}的其他基金

Visible Light-Enabled Synthesis of Heterocycles through Energy Transfer
通过能量转移可见光合成杂环
  • 批准号:
    10636772
  • 财政年份:
    2021
  • 资助金额:
    $ 30.56万
  • 项目类别:
Visible Light-Enabled Synthesis of Heterocycles through Energy Transfer - Equipment Supplement
通过能量转移可见光合成杂环 - 设备补充
  • 批准号:
    10797125
  • 财政年份:
    2021
  • 资助金额:
    $ 30.56万
  • 项目类别:
Visible Light-Enabled Synthesis of Heterocycles through Energy Transfer
通过能量转移可见光合成杂环
  • 批准号:
    10369700
  • 财政年份:
    2021
  • 资助金额:
    $ 30.56万
  • 项目类别:
Iron-Catalyzed Metathesis and Carbocation Cyclization Reactions-Supplement
铁催化复分解和碳阳离子环化反应-补充
  • 批准号:
    9708592
  • 财政年份:
    2016
  • 资助金额:
    $ 30.56万
  • 项目类别:
Iron-Catalyzed Metathesis and Carbocation Cyclization Reactions
铁催化复分解和碳正离子环化反应
  • 批准号:
    9193824
  • 财政年份:
    2016
  • 资助金额:
    $ 30.56万
  • 项目类别:
Iron-Catalyzed Metathesis and Carbocation Cyclization Reactions
铁催化复分解和碳正离子环化反应
  • 批准号:
    9765335
  • 财政年份:
    2016
  • 资助金额:
    $ 30.56万
  • 项目类别:

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    9980424
  • 财政年份:
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烯烃和炔烃的组合催化官能化
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