A Unified, Practical Synthesis of Five-Membered Aromatic Heterocycles
A Unified, Practical Synthesis of Five-Membered Aromatic Heterocycles
批准号:
EP/M019195/1
负责人:
Edward Anderson
金额:
$44.63万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2015
资助国家:
英国
项目状态:
已结题
起止时间:
2015 至 --
中文摘要
2000-2012年间世界上最畅销的药物是降胆固醇药物立普妥,这是一种有机分子,其核心含有一个由四个碳原子和一个氮原子组成的五元环,称为“吡咯”。一种相关的五元含氧环被称为呋喃,这是在许多药物和农用化学品中发现的另一个常见基序,例如拟除虫菊酯杀虫剂。虽然这些和其他结构相似的有机环系继续成为制药和农化工业研究的基石,但由于用于构建环的化学反应的内在结构要求,最常见的合成方法限制了新药/农化先导的设计。在这个建议中,我们的目标是开发一种新的反应,可以制备四种不同类别的这些重要分子,使用一种新的钯催化过程来形成环系。该方法将能够获得广泛的产品(许多以前无法实现),因为它允许我们轻松地‘调整’不同功能基团在戒指周围的定位。我们计划使用概念上简单、易于应用的方法,从廉价的起始材料(如炔烃、醛和酮)组装反应底物,从而使这项研究很容易被最终用户采用。这些短的合成路线将环境和经济成本降至最低,避免昂贵的空气或湿度敏感催化剂和有毒试剂也是如此。综上所述,这些考虑因素恰好符合EPSRC大挑战的‘拨号分子’的主题,根据该主题,单一反应类型可以以直接和快速的方式‘拨号’许多不同的产品。为了最大限度地发挥这项研究的影响,与英国制药和农化行业的工业终端用户的互动构成了这项提议的组成部分。通过互动知识和材料交流计划与两家公司直接合作,我们将能够探索与特定和当前行业相关的目标,并确保我们开发的技术可以轻易地被这些行业采用。这可以促进新药物和农用化学品的开发(尤其是通过测试我们将在项目过程中制造的化合物)-这不仅从经济角度来看,而且更重要的是在改善人类健康和应对全球粮食安全挑战方面具有好处。总而言之,强大的合成方法、廉价的起始材料和常见的催化剂相结合,可以产生一种新的、易于部署的方法来合成四类重要的有机化合物,并在人类健康和农业中的应用记录得到证明。这项工作将简化这些领域的研究,这些领域是21世纪的主要全球挑战。
英文摘要
The world's top-selling pharmaceutical of 2000-2012 was the cholesterol-lowering drug Lipitor, an organic molecule containing at its core a five-membered ring called a 'pyrrole', which comprises four carbon atoms and one nitrogen atom. A related five-membered oxygen-containing ring called a 'furan' is another common motif found in many drugs and agrochemicals, such as the pyrethroid insecticide resmethrin. Although these and other structurally similar organic ring systems continue to form a cornerstone of research in the pharmaceutical and agrochemical industry, the most common methods for their synthesis restrict the design of new drug / agrochemical leads, due to the intrinsic structural requirements of the chemical reactions used to build the ring.In this proposal, we aim to develop a new reaction that can prepare four different classes of these important molecules, using a novel palladium-catalyzed process to form the ring system. The method will be able to access a wide range of products (many previously unattainable), as it allows us to easily 'tune' the positioning of different functional groups around the ring. We plan to use conceptually simple, easily applied methods to assemble the reaction substrates from cheap starting materials (such as alkynes, aldehydes and ketones), thus enabling the research to be readily adopted by end users. These short synthetic routes minimise environmental and economic cost, as does the avoidance of expensive air or moisture sensitive catalysts, and toxic reagents. Taken together, these considerations fit neatly into the EPSRC Grand Challenge theme of 'Dial-a-Molecule', whereby a single reaction type can 'dial up' many different products in a straightforward and rapid fashion.To maximize the impact of this research, interactions with industrial end-users in the UK pharmaceutical and agrochemical industry form an integral part of this proposal. By directly collaborating with two companies through an interactive knowledge and material exchange programme, we will be able to explore targets of specific and current industrial relevance, and also ensure that the technology we develop can be readily adopted by these industries. This could facilitate the development of new pharmaceuticals and agrochemicals (not least through testing of compounds we will make in the course of the project) - which has consequent benefits not only from an economic perspective, but more importantly in improving human health and in tackling the global challenge of food security.In summary, a combination of robust synthetic methodology, cheap starting materials, and commonly available catalysts could lead to a new and readily deployed method for the synthesis of four important organic compound classes with a proven track record of application in human health and agriculture. This work will streamline research in these fields, which are major global challenges of the 21st century.
期刊论文(9)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1021/acscatal.8b02248
发表时间:
2018-09-01
期刊:
ACS CATALYSIS
影响因子:
12.9
作者:
[Arroniz, Carlos, Chaubet, Guilhem, Anderson, Edward A.]
通讯作者:
Anderson, Edward A.
DOI:
10.1039/c8sc01355a
发表时间:
2018-06-21
期刊:
Chemical science
影响因子:
8.4
作者:
[Caputo DFJ, Arroniz C, Dürr AB, Mousseau JJ, Stepan AF, Mansfield SJ, Anderson EA]
通讯作者:
Anderson EA
Thiophene dioxides: Versatile tools for ring synthesis
-
批准号:EP/X028674/1
-
项目类别:Research Grant
-
资助金额:$58.29万
-
财政年份:2023
-
负责人:Edward Anderson
-
依托单位:
New Directions in Bioisostere Research
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批准号:EP/S013172/1
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项目类别:Research Grant
-
资助金额:$72.98万
-
财政年份:2019
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负责人:Edward Anderson
-
依托单位:
Enabling precision distance measurements in long RNAs
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批准号:BB/R021848/1
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项目类别:Research Grant
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资助金额:$19.24万
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财政年份:2018
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负责人:Edward Anderson
-
依托单位:
Cascade Catalysis: From Alkynes to Polycycles
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批准号:EP/K005391/1
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项目类别:Research Grant
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资助金额:$30.0万
-
财政年份:2013
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负责人:Edward Anderson
-
依托单位:
A Unified Route to Bicyclic Heterocycles: Synthesis and Applications
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批准号:EP/H025839/1
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项目类别:Research Grant
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资助金额:$40.74万
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财政年份:2010
-
负责人:Edward Anderson
-
依托单位:
Application of Statistical Classification Analysis to Engineering Student Recruitment
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批准号:0836028
-
项目类别:Standard Grant
-
资助金额:$0.0万
-
财政年份:2009
-
负责人:Edward Anderson
-
依托单位:
From Total Synthesis-Inspired Methodology to Anti-HIV therapy
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批准号:EP/E055273/1
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项目类别:Fellowship
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资助金额:$84.94万
-
财政年份:2007
-
负责人:Edward Anderson
-
依托单位:
Refinement of Introductory Engineering Thermodynamics Computer-Based-Learning Modules
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批准号:0089410
-
项目类别:Standard Grant
-
资助金额:$24.0万
-
财政年份:2001
-
负责人:Edward Anderson
-
依托单位:
Special Graudate Student Research Award
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批准号:8920758
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项目类别:Standard Grant
-
资助金额:$0.6万
-
财政年份:1989
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负责人:Edward Anderson
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依托单位:
Engineering Creativity Award: Laser Induced Breakup or & Atomization of Small Liquid Jets
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批准号:8811625
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项目类别:Continuing Grant
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资助金额:$8.94万
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财政年份:1988
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负责人:Edward Anderson
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依托单位:
Total Absorptance Correlations For Semitransparent Solids
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批准号:7683021
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项目类别:Standard Grant
-
资助金额:$2.69万
-
财政年份:1977
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负责人:Edward Anderson
-
依托单位:
海外基金