The Synthesis of Novel N-Heterocyclic Scaffolds and Diazirine-Based Molecular Tags

<p>N-Heterocycles are ubiquitous in biologically active natural products and pharmaceuticals. Yet, new syntheses and modifications of N-heterocycles are continually of interest for the purposes of expanding chemical space, finding quicker synthetic routes, better pharmaceuticals, and even new...

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Main Author: Ortiz, Gerardo X.
Other Authors: Wang, Qiu
Published: 2016
Subjects:
Online Access:http://hdl.handle.net/10161/12905
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spelling ndltd-DUKE-oai-dukespace.lib.duke.edu-10161-129052016-10-01T03:31:00ZThe Synthesis of Novel N-Heterocyclic Scaffolds and Diazirine-Based Molecular TagsOrtiz, Gerardo X.Organic chemistryChemistry3-aminationdiazirinehyperpolarizationindolepiperidinesinglet state<p>N-Heterocycles are ubiquitous in biologically active natural products and pharmaceuticals. Yet, new syntheses and modifications of N-heterocycles are continually of interest for the purposes of expanding chemical space, finding quicker synthetic routes, better pharmaceuticals, and even new handles for molecular labeling. There are several iterations of molecular labeling; the decision of where to place the label is as important as of which visualization technique to emphasize. </p><p>Piperidine and indole are two of the most widely distributed N-heterocycles and thus were targeted for synthesis, functionalization, and labeling. The major functionalization of these scaffolds should include a nitrogen atom, while the inclusion of other groups will expand the utility of the method. Towards this goal, ease of synthesis and elimination of step-wise transformations are of the utmost concern. Here, the concept of electrophilic amination can be utilized as a way of introducing complex secondary and tertiary amines with minimal operations.</p><p>Molecular tags should be on or adjacent to an N-heterocycle as they are normally the motifs implicated at the binding site of enzymes and receptors. The labeling techniques should be useful to a chemical biologist, but should also in theory be useful to the medical community. The two types of labeling that are of interest to a chemist and a physician would be positron emission tomography (PET) and magnetic resonance imaging (MRI). </p><p>Coincidentally, the 3-positions of both piperidine and indole are historically difficult to access and modify. However, using electrophilic amination techniques, 3-functionalized piperidines can be synthesized in good yields from unsaturated amines. In the same manner, 3-labeled piperidines can be obtained; the piperidines can either be labeled with an azide for biochemical research or an 18F for PET imaging research. The novel electrophiles, N-benzenesulfonyloxyamides, can be reacted with indole in one of two ways: 3-amidation or 1-amidomethylation, depending on the exact reaction conditions. Lastly, a novel, hyperpolarizable 15N2-labeled diazirine has been developed as an exogenous and versatile tag for use in magnetic resonance imaging.</p>DissertationWang, Qiu2016Dissertationhttp://hdl.handle.net/10161/12905
collection NDLTD
sources NDLTD
topic Organic chemistry
Chemistry
3-amination
diazirine
hyperpolarization
indole
piperidine
singlet state
spellingShingle Organic chemistry
Chemistry
3-amination
diazirine
hyperpolarization
indole
piperidine
singlet state
Ortiz, Gerardo X.
The Synthesis of Novel N-Heterocyclic Scaffolds and Diazirine-Based Molecular Tags
description <p>N-Heterocycles are ubiquitous in biologically active natural products and pharmaceuticals. Yet, new syntheses and modifications of N-heterocycles are continually of interest for the purposes of expanding chemical space, finding quicker synthetic routes, better pharmaceuticals, and even new handles for molecular labeling. There are several iterations of molecular labeling; the decision of where to place the label is as important as of which visualization technique to emphasize. </p><p>Piperidine and indole are two of the most widely distributed N-heterocycles and thus were targeted for synthesis, functionalization, and labeling. The major functionalization of these scaffolds should include a nitrogen atom, while the inclusion of other groups will expand the utility of the method. Towards this goal, ease of synthesis and elimination of step-wise transformations are of the utmost concern. Here, the concept of electrophilic amination can be utilized as a way of introducing complex secondary and tertiary amines with minimal operations.</p><p>Molecular tags should be on or adjacent to an N-heterocycle as they are normally the motifs implicated at the binding site of enzymes and receptors. The labeling techniques should be useful to a chemical biologist, but should also in theory be useful to the medical community. The two types of labeling that are of interest to a chemist and a physician would be positron emission tomography (PET) and magnetic resonance imaging (MRI). </p><p>Coincidentally, the 3-positions of both piperidine and indole are historically difficult to access and modify. However, using electrophilic amination techniques, 3-functionalized piperidines can be synthesized in good yields from unsaturated amines. In the same manner, 3-labeled piperidines can be obtained; the piperidines can either be labeled with an azide for biochemical research or an 18F for PET imaging research. The novel electrophiles, N-benzenesulfonyloxyamides, can be reacted with indole in one of two ways: 3-amidation or 1-amidomethylation, depending on the exact reaction conditions. Lastly, a novel, hyperpolarizable 15N2-labeled diazirine has been developed as an exogenous and versatile tag for use in magnetic resonance imaging.</p> === Dissertation
author2 Wang, Qiu
author_facet Wang, Qiu
Ortiz, Gerardo X.
author Ortiz, Gerardo X.
author_sort Ortiz, Gerardo X.
title The Synthesis of Novel N-Heterocyclic Scaffolds and Diazirine-Based Molecular Tags
title_short The Synthesis of Novel N-Heterocyclic Scaffolds and Diazirine-Based Molecular Tags
title_full The Synthesis of Novel N-Heterocyclic Scaffolds and Diazirine-Based Molecular Tags
title_fullStr The Synthesis of Novel N-Heterocyclic Scaffolds and Diazirine-Based Molecular Tags
title_full_unstemmed The Synthesis of Novel N-Heterocyclic Scaffolds and Diazirine-Based Molecular Tags
title_sort synthesis of novel n-heterocyclic scaffolds and diazirine-based molecular tags
publishDate 2016
url http://hdl.handle.net/10161/12905
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