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Rapid and Efficient Synthesis of [(11)C]Trifluoromethylarenes from Primary Aromatic Amines and [(11)C]CuCF(3)

[Image: see text] Prior studies have shown that trifluoromethylarenes can be labeled in high molar activities (A(m) > 200 GBq/μmol) with positron-emitting carbon-11 (t(1/2) = 20.4 min) by the reaction of the copper(I) derivative of [(11)C]fluoroform [(11)C]CuCF(3), with several types of precursor...

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Autores principales: Young, Nicholas J., Pike, Victor W., Taddei, Carlotta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7424730/
https://www.ncbi.nlm.nih.gov/pubmed/32803050
http://dx.doi.org/10.1021/acsomega.0c02027
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author Young, Nicholas J.
Pike, Victor W.
Taddei, Carlotta
author_facet Young, Nicholas J.
Pike, Victor W.
Taddei, Carlotta
author_sort Young, Nicholas J.
collection PubMed
description [Image: see text] Prior studies have shown that trifluoromethylarenes can be labeled in high molar activities (A(m) > 200 GBq/μmol) with positron-emitting carbon-11 (t(1/2) = 20.4 min) by the reaction of the copper(I) derivative of [(11)C]fluoroform [(11)C]CuCF(3), with several types of precursors, such as aryl iodides, arylboronic acids, and aryldiazonium salts. Nonetheless, these precursors can be challenging to synthesize, and in the case of diazonium salts, are unstable. Methods that reduce challenges in precursor preparation for the synthesis of [(11)C]trifluoromethylarenes are desirable to enhance possibilities for developing biologically relevant (11)C-labeled compounds as radiotracers for biomedical imaging with positron emission tomography (PET). Here, we explored the production of no-carrier-added [(11)C]trifluoromethylarenes from commercially available primary aromatic amines through reactions of [(11)C]CuCF(3) with diazonium salts that were generated in situ. Moderate to high isolated decay-corrected radiochemical yields (RCY) (32–84%) were obtained rapidly (within 2 min) for many para-substituted and meta-substituted primary aromatic amines bearing a halo, methoxy, thiomethyl, hydroxy, nitro, nitrile, carboxyl, ethylcarboxy, or trifluoromethyl substituent. Null to low RCYs (0–13%) were observed only for ortho bromo-, nitro-, or nitrile-substituted precursors. This new radiosynthetic method usefully expands options for producing PET radiotracers bearing a [(11)C]trifluoromethyl group, especially from aryl amine precursors.
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spelling pubmed-74247302020-08-14 Rapid and Efficient Synthesis of [(11)C]Trifluoromethylarenes from Primary Aromatic Amines and [(11)C]CuCF(3) Young, Nicholas J. Pike, Victor W. Taddei, Carlotta ACS Omega [Image: see text] Prior studies have shown that trifluoromethylarenes can be labeled in high molar activities (A(m) > 200 GBq/μmol) with positron-emitting carbon-11 (t(1/2) = 20.4 min) by the reaction of the copper(I) derivative of [(11)C]fluoroform [(11)C]CuCF(3), with several types of precursors, such as aryl iodides, arylboronic acids, and aryldiazonium salts. Nonetheless, these precursors can be challenging to synthesize, and in the case of diazonium salts, are unstable. Methods that reduce challenges in precursor preparation for the synthesis of [(11)C]trifluoromethylarenes are desirable to enhance possibilities for developing biologically relevant (11)C-labeled compounds as radiotracers for biomedical imaging with positron emission tomography (PET). Here, we explored the production of no-carrier-added [(11)C]trifluoromethylarenes from commercially available primary aromatic amines through reactions of [(11)C]CuCF(3) with diazonium salts that were generated in situ. Moderate to high isolated decay-corrected radiochemical yields (RCY) (32–84%) were obtained rapidly (within 2 min) for many para-substituted and meta-substituted primary aromatic amines bearing a halo, methoxy, thiomethyl, hydroxy, nitro, nitrile, carboxyl, ethylcarboxy, or trifluoromethyl substituent. Null to low RCYs (0–13%) were observed only for ortho bromo-, nitro-, or nitrile-substituted precursors. This new radiosynthetic method usefully expands options for producing PET radiotracers bearing a [(11)C]trifluoromethyl group, especially from aryl amine precursors. American Chemical Society 2020-07-28 /pmc/articles/PMC7424730/ /pubmed/32803050 http://dx.doi.org/10.1021/acsomega.0c02027 Text en Copyright © 2020 U.S. Government This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Young, Nicholas J.
Pike, Victor W.
Taddei, Carlotta
Rapid and Efficient Synthesis of [(11)C]Trifluoromethylarenes from Primary Aromatic Amines and [(11)C]CuCF(3)
title Rapid and Efficient Synthesis of [(11)C]Trifluoromethylarenes from Primary Aromatic Amines and [(11)C]CuCF(3)
title_full Rapid and Efficient Synthesis of [(11)C]Trifluoromethylarenes from Primary Aromatic Amines and [(11)C]CuCF(3)
title_fullStr Rapid and Efficient Synthesis of [(11)C]Trifluoromethylarenes from Primary Aromatic Amines and [(11)C]CuCF(3)
title_full_unstemmed Rapid and Efficient Synthesis of [(11)C]Trifluoromethylarenes from Primary Aromatic Amines and [(11)C]CuCF(3)
title_short Rapid and Efficient Synthesis of [(11)C]Trifluoromethylarenes from Primary Aromatic Amines and [(11)C]CuCF(3)
title_sort rapid and efficient synthesis of [(11)c]trifluoromethylarenes from primary aromatic amines and [(11)c]cucf(3)
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7424730/
https://www.ncbi.nlm.nih.gov/pubmed/32803050
http://dx.doi.org/10.1021/acsomega.0c02027
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