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Synthesis of enantiopure (18)F-trifluoromethyl cysteine as a structure-mimetic amino acid tracer for glioma imaging

Although (11)C-labelled sulfur-containing amino acids (SAAs) including L-methyl-[(11)C]methionine and S-[(11)C]-methyl-L-cysteine, are attractive tracers for glioma positron emission tomography (PET) imaging, their applications are limited by the short half-life of the radionuclide (11)C (t(1/2) = 2...

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Autores principales: Liu, Shaoyu, Ma, Hui, Zhang, Zhanwen, Lin, Liping, Yuan, Gongjun, Tang, Xiaolan, Nie, Dahong, Jiang, Shende, Yang, Guang, Tang, Ganghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6401404/
https://www.ncbi.nlm.nih.gov/pubmed/30867821
http://dx.doi.org/10.7150/thno.29405
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author Liu, Shaoyu
Ma, Hui
Zhang, Zhanwen
Lin, Liping
Yuan, Gongjun
Tang, Xiaolan
Nie, Dahong
Jiang, Shende
Yang, Guang
Tang, Ganghua
author_facet Liu, Shaoyu
Ma, Hui
Zhang, Zhanwen
Lin, Liping
Yuan, Gongjun
Tang, Xiaolan
Nie, Dahong
Jiang, Shende
Yang, Guang
Tang, Ganghua
author_sort Liu, Shaoyu
collection PubMed
description Although (11)C-labelled sulfur-containing amino acids (SAAs) including L-methyl-[(11)C]methionine and S-[(11)C]-methyl-L-cysteine, are attractive tracers for glioma positron emission tomography (PET) imaging, their applications are limited by the short half-life of the radionuclide (11)C (t(1/2) = 20.4 min). However, development of (18)F-labelled SAAs ((18)F, t(1/2) = 109.8 min) without significant structural changes or relying on prosthetic groups remains to be a great challenge due to the absence of adequate space for chemical modification. Methods: We herein present (18)F-trifluoromethylated D- and L-cysteines which were designed by replacing the methyl group with (18)F-trifluoromethyl group using a structure-based bioisosterism strategy. These two enantiomers were synthesized stereoselectively from serine-derived cyclic sulfamidates via a nucleophilic (18)F-trifluoromethylthiolation reaction followed by a deprotection reaction. Furthermore, we conducted preliminary in vitro and in vivo studies to investigate the feasibility of using (18)F-trifluoromethylated cysteines as PET tracers for glioma imaging. Results: The two-step radiosynthesis provided the desired products in excellent enantiopurity (ee > 99%) with 14% ± 3% of radiochemical yield. In vitro cell study demonstrated that both enantiomers were taken up efficiently by C6 tumor cells and were mainly transported by systems L and ASC. Among them, the D-enantiomer exhibited relatively good stability and high tumor-specific accumulation in the animal studies. Conclusion: Our findings indicate that (18)F-trifluoromethylated D-cysteine, a new SAA tracer, may be a potential candidate for glioma imaging. Taken together, our study represents a first step toward developing (18)F-trifluoromethylated cysteines as structure-mimetic tracers for PET tumor imaging.
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spelling pubmed-64014042019-03-13 Synthesis of enantiopure (18)F-trifluoromethyl cysteine as a structure-mimetic amino acid tracer for glioma imaging Liu, Shaoyu Ma, Hui Zhang, Zhanwen Lin, Liping Yuan, Gongjun Tang, Xiaolan Nie, Dahong Jiang, Shende Yang, Guang Tang, Ganghua Theranostics Research Paper Although (11)C-labelled sulfur-containing amino acids (SAAs) including L-methyl-[(11)C]methionine and S-[(11)C]-methyl-L-cysteine, are attractive tracers for glioma positron emission tomography (PET) imaging, their applications are limited by the short half-life of the radionuclide (11)C (t(1/2) = 20.4 min). However, development of (18)F-labelled SAAs ((18)F, t(1/2) = 109.8 min) without significant structural changes or relying on prosthetic groups remains to be a great challenge due to the absence of adequate space for chemical modification. Methods: We herein present (18)F-trifluoromethylated D- and L-cysteines which were designed by replacing the methyl group with (18)F-trifluoromethyl group using a structure-based bioisosterism strategy. These two enantiomers were synthesized stereoselectively from serine-derived cyclic sulfamidates via a nucleophilic (18)F-trifluoromethylthiolation reaction followed by a deprotection reaction. Furthermore, we conducted preliminary in vitro and in vivo studies to investigate the feasibility of using (18)F-trifluoromethylated cysteines as PET tracers for glioma imaging. Results: The two-step radiosynthesis provided the desired products in excellent enantiopurity (ee > 99%) with 14% ± 3% of radiochemical yield. In vitro cell study demonstrated that both enantiomers were taken up efficiently by C6 tumor cells and were mainly transported by systems L and ASC. Among them, the D-enantiomer exhibited relatively good stability and high tumor-specific accumulation in the animal studies. Conclusion: Our findings indicate that (18)F-trifluoromethylated D-cysteine, a new SAA tracer, may be a potential candidate for glioma imaging. Taken together, our study represents a first step toward developing (18)F-trifluoromethylated cysteines as structure-mimetic tracers for PET tumor imaging. Ivyspring International Publisher 2019-01-30 /pmc/articles/PMC6401404/ /pubmed/30867821 http://dx.doi.org/10.7150/thno.29405 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Liu, Shaoyu
Ma, Hui
Zhang, Zhanwen
Lin, Liping
Yuan, Gongjun
Tang, Xiaolan
Nie, Dahong
Jiang, Shende
Yang, Guang
Tang, Ganghua
Synthesis of enantiopure (18)F-trifluoromethyl cysteine as a structure-mimetic amino acid tracer for glioma imaging
title Synthesis of enantiopure (18)F-trifluoromethyl cysteine as a structure-mimetic amino acid tracer for glioma imaging
title_full Synthesis of enantiopure (18)F-trifluoromethyl cysteine as a structure-mimetic amino acid tracer for glioma imaging
title_fullStr Synthesis of enantiopure (18)F-trifluoromethyl cysteine as a structure-mimetic amino acid tracer for glioma imaging
title_full_unstemmed Synthesis of enantiopure (18)F-trifluoromethyl cysteine as a structure-mimetic amino acid tracer for glioma imaging
title_short Synthesis of enantiopure (18)F-trifluoromethyl cysteine as a structure-mimetic amino acid tracer for glioma imaging
title_sort synthesis of enantiopure (18)f-trifluoromethyl cysteine as a structure-mimetic amino acid tracer for glioma imaging
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6401404/
https://www.ncbi.nlm.nih.gov/pubmed/30867821
http://dx.doi.org/10.7150/thno.29405
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