New Synthetic Chemistries Enabled by Oxyallyl and 2-Aminoallyl Cations
New Synthetic Chemistries Enabled by Oxyallyl and 2-Aminoallyl Cations
批准号:
10386927
负责人:
Rendy Gregory Kartika
金额:
$28.15万
依托单位国家:
美国
项目类别:
财政年份:
2018
资助国家:
美国
项目状态:
未结题
起止时间:
2018-08-15 至 2025-04-30
关键词:
Applications GrantsArchitectureAttentionBiologicalBiomedical ResearchBiotechnologyCarbonCationsChemicalsChemistryCollectionComplexCyclizationDevelopmentDiseaseEvaluationExhibitsFoundationsFutureGoalsHealthHumanImidesInterleukin-17KetonesKnowledgeLeadLibrariesMethodsMissionModernizationMolecularOrganic SynthesisPharmacologic SubstancePositioning AttributeProcessProductionProteinsReactionResearchSynthesis ChemistryTechnologyTherapeuticTherapeutic AgentsUnited States National Institutes of HealthWorkcycloadditiondrug discoveryhigh throughput screeningimprovedinterestnovelopen innovationprogramsscaffoldsmall moleculesmall molecule librariesstereochemistry
中文摘要
项目总结/文摘
英文摘要
PROJECT SUMMARY/ABSTRACT
This grant application describes our proposed research in the production of value-added compounds of synthetic and
biological interests, using novel chemistries that are centralized in the intermediacy of unsymmetrical oxyallyl and 2-
aminoallyl cations. Oxyallyl and 2-aminoallyl cations are structurally unique reactive species. These intermediates have
been utilized extensively in the Nazarov-type cyclization as well as cycloaddition reactions to assemble various complex
molecular architectures. Despite these well-known reactivity, synthetic methods that harness the nucleophilic capture of
unsymmetrical oxyallyl and 2-aminoallyl cations in a regioselective manner remain underexplored. This lack of studies
consequently limit the full synthetic utilities of these versatile intermediates particularly in the arena of drug discovery.
The long-term goal of our research program is to investigate the synthetic applicability of unsymmetrical oxyallyl and
2-aminoallyl cation technology in generating a library of novel small molecules in the chemical space that are suitable for
high throughput screening in drug discovery. These studies could lead to protecting and improving human health, which
is the ultimate goal of the NIH. The objective of the proposed research is to demonstrate that unsymmetrical oxyallyl and
2-aminoallyl cations are highly versatile reactive intermediates that could be readily harnessed to produce diverse
molecular scaffolds of biological and pharmaceutical relevance. Our hypothesis is that unsymmetrical oxyallyl and 2-
aminoallyl cations could be generated under mild catalytic conditions and captured by a broad spectrum of nucleophiles at
the α-carbon in a regioselective manner by introducing appropriate “protecting” groups in their respective heteroatom
centers. We have conducted extensive preliminary studies to support this hypothesis.
We expect that completion of the proposed research will enable the rapid production of structurally novel small
molecules with diverse stereochemistry and functionalities, which can be then evaluated for their therapeutic applications.
To screen their biological activities, we have participated in the Open Innovation Drug Discovery (OIDD) at Eli Lilly. In
fact, submission of synthetic products generated during our preliminary studies to this program has yielded interesting
results. For instance, several of our compounds were found to exhibit inhibitory activities against IL-17A and PCSK9
proteins. Overall, our research will lay the foundation for detailed synthetic applications of oxyallyl and 2-aminoallyl
cations, enabling future studies of the resulting structurally unique small molecules as potential therapeutic agents.
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Mechanistic Perspectives in the Regioselective Indole Addition to Unsymmetrical Silyloxyallyl Cations.
不对称甲硅烷氧基烯丙基阳离子区域选择性吲哚加成的机理观点。
DOI:
10.1021/acs.joc.9b00853
发表时间:
2019
期刊:
The Journal of organic chemistry
影响因子:
--
作者:
[Bresnahan,CaitlinG, Taylor-Edinbyrd,KiaraA, Cleveland,AlexanderH, Malone,JoshuaA, Dange,NitinS, Milet,Anne, Kumar,Revati, Kartika,Rendy]
通讯作者:
Kartika,Rendy
DOI:
10.1021/acs.orglett.2c01890
发表时间:
2022-07-08
期刊:
ORGANIC LETTERS
影响因子:
5.2
作者:
[Malone, Joshua A., Philkhana, Satish Chandra, Stepherson, Jacob R., Badmus, Fatimat O., Fronczek, Frank R., Kartika, Rendy]
通讯作者:
Kartika, Rendy
DOI:
10.1039/d0cc01796e
发表时间:
2020-05-07
期刊:
Chemical communications (Cambridge, England)
影响因子:
--
作者:
[Badmus FO , Malone JA , Fronczek FR , Kartika R ]
通讯作者:
Kartika R
DOI:
10.1055/s-0040-1706713
发表时间:
2021
期刊:
Synthesis
影响因子:
--
作者:
[Philkhana SC, Badmus FO, Dos Reis IC, Kartika R]
通讯作者:
Kartika R
DOI:
10.1002/anie.201808764
发表时间:
2018-11-19
期刊:
Angewandte Chemie (International ed. in English)
影响因子:
--
作者:
[Saputra MA, Nepal B, Dange NS, Du P, Fronczek FR, Kumar R, Kartika R]
通讯作者:
Kartika R
共 6 条
New Synthetic Chemistries Enabled by Oxyallyl and 2-Aminoallyl Cations
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批准号:9914308
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项目类别:
-
资助金额:$28.15万
-
财政年份:2018
-
负责人:Rendy Gregory Kartika
-
依托单位:
New Synthetic Chemistries Enabled by Oxyallyl and 2-Aminoallyl Cations
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批准号:9757809
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项目类别:
-
资助金额:$28.15万
-
财政年份:2018
-
负责人:Rendy Gregory Kartika
-
依托单位:
New Synthetic Chemistries Enabled by Oxyallyl and 2-Aminoallyl Cations
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批准号:10159938
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项目类别:
-
资助金额:$28.15万
-
财政年份:2018
-
负责人:Rendy Gregory Kartika
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依托单位:
海外基金