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Synthesis and Biological Evaluation of O-[3-(18)F-fluoropropyl]-α-methyl Tyrosine in Mesothelioma-Bearing Rodents

Radiolabeled tyrosine analogs enter cancer cells via upregulated amino acid transporter system and have been shown to be superior to (18)F-fluoro-2-deoxy-D-glucose ((18)F-FDG) in differential diagnosis in cancers. In this study, we synthesized O-[3-(19)F-fluoropropyl]-α-methyl tyrosine ((19)F-FPAMT)...

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Autores principales: Shih, I-Hong, Kong, Fan-Lin, Ali, Mohammad S., Zhang, Yinhan, Yu, Dong-Fang, Duan, Xudong, Yang, David J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3722965/
https://www.ncbi.nlm.nih.gov/pubmed/23936803
http://dx.doi.org/10.1155/2013/460619
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author Shih, I-Hong
Kong, Fan-Lin
Ali, Mohammad S.
Zhang, Yinhan
Yu, Dong-Fang
Duan, Xudong
Yang, David J.
author_facet Shih, I-Hong
Kong, Fan-Lin
Ali, Mohammad S.
Zhang, Yinhan
Yu, Dong-Fang
Duan, Xudong
Yang, David J.
author_sort Shih, I-Hong
collection PubMed
description Radiolabeled tyrosine analogs enter cancer cells via upregulated amino acid transporter system and have been shown to be superior to (18)F-fluoro-2-deoxy-D-glucose ((18)F-FDG) in differential diagnosis in cancers. In this study, we synthesized O-[3-(19)F-fluoropropyl]-α-methyl tyrosine ((19)F-FPAMT) and used manual and automated methods to synthesize O-[3-(18)F-fluoropropyl]-α-methyl tyrosine ((18)F-FPAMT) in three steps: nucleophilic substitution, deprotection of butoxycarbonyl, and deesterification. Manual and automated synthesis methods produced (18)F-FPAMT with a radiochemical purity >96%. The decay-corrected yield of (18)F-FPAMT by manual synthesis was 34% at end-of-synthesis (88 min). The decay-corrected yield of (18)F-FPAMT by automated synthesis was 15% at end-of-synthesis (110 min). (18)F-FDG and (18)F-FPAMT were used for in vitro and in vivo studies to evaluate the feasibility of (18)F-FPAMT for imaging rat mesothelioma (IL-45). In vitro studies comparing (18)F-FPAMT with (18)F-FDG revealed that (18)F-FDG had higher uptake than that of (18)F-FPAMT, and the uptake ratio of (18)F-FPAMT reached the plateau after being incubated for 60 min. Biodistribution studies revealed that the accumulation of (18)F-FPAMT in the heart, lungs, thyroid, spleen, and brain was significantly lower than that of (18)F-FDG. There was poor bone uptake in (18)F-FPAMT for up to 3 hrs suggesting its in vivo stability. The imaging studies showed good visualization of tumors with (18)F-FPAMT. Together, these results suggest that (18)F-FPAMT can be successfully synthesized and has great potential in mesothelioma imaging.
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spelling pubmed-37229652013-08-09 Synthesis and Biological Evaluation of O-[3-(18)F-fluoropropyl]-α-methyl Tyrosine in Mesothelioma-Bearing Rodents Shih, I-Hong Kong, Fan-Lin Ali, Mohammad S. Zhang, Yinhan Yu, Dong-Fang Duan, Xudong Yang, David J. Biomed Res Int Research Article Radiolabeled tyrosine analogs enter cancer cells via upregulated amino acid transporter system and have been shown to be superior to (18)F-fluoro-2-deoxy-D-glucose ((18)F-FDG) in differential diagnosis in cancers. In this study, we synthesized O-[3-(19)F-fluoropropyl]-α-methyl tyrosine ((19)F-FPAMT) and used manual and automated methods to synthesize O-[3-(18)F-fluoropropyl]-α-methyl tyrosine ((18)F-FPAMT) in three steps: nucleophilic substitution, deprotection of butoxycarbonyl, and deesterification. Manual and automated synthesis methods produced (18)F-FPAMT with a radiochemical purity >96%. The decay-corrected yield of (18)F-FPAMT by manual synthesis was 34% at end-of-synthesis (88 min). The decay-corrected yield of (18)F-FPAMT by automated synthesis was 15% at end-of-synthesis (110 min). (18)F-FDG and (18)F-FPAMT were used for in vitro and in vivo studies to evaluate the feasibility of (18)F-FPAMT for imaging rat mesothelioma (IL-45). In vitro studies comparing (18)F-FPAMT with (18)F-FDG revealed that (18)F-FDG had higher uptake than that of (18)F-FPAMT, and the uptake ratio of (18)F-FPAMT reached the plateau after being incubated for 60 min. Biodistribution studies revealed that the accumulation of (18)F-FPAMT in the heart, lungs, thyroid, spleen, and brain was significantly lower than that of (18)F-FDG. There was poor bone uptake in (18)F-FPAMT for up to 3 hrs suggesting its in vivo stability. The imaging studies showed good visualization of tumors with (18)F-FPAMT. Together, these results suggest that (18)F-FPAMT can be successfully synthesized and has great potential in mesothelioma imaging. Hindawi Publishing Corporation 2013 2013-07-09 /pmc/articles/PMC3722965/ /pubmed/23936803 http://dx.doi.org/10.1155/2013/460619 Text en Copyright © 2013 I-Hong Shih et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Shih, I-Hong
Kong, Fan-Lin
Ali, Mohammad S.
Zhang, Yinhan
Yu, Dong-Fang
Duan, Xudong
Yang, David J.
Synthesis and Biological Evaluation of O-[3-(18)F-fluoropropyl]-α-methyl Tyrosine in Mesothelioma-Bearing Rodents
title Synthesis and Biological Evaluation of O-[3-(18)F-fluoropropyl]-α-methyl Tyrosine in Mesothelioma-Bearing Rodents
title_full Synthesis and Biological Evaluation of O-[3-(18)F-fluoropropyl]-α-methyl Tyrosine in Mesothelioma-Bearing Rodents
title_fullStr Synthesis and Biological Evaluation of O-[3-(18)F-fluoropropyl]-α-methyl Tyrosine in Mesothelioma-Bearing Rodents
title_full_unstemmed Synthesis and Biological Evaluation of O-[3-(18)F-fluoropropyl]-α-methyl Tyrosine in Mesothelioma-Bearing Rodents
title_short Synthesis and Biological Evaluation of O-[3-(18)F-fluoropropyl]-α-methyl Tyrosine in Mesothelioma-Bearing Rodents
title_sort synthesis and biological evaluation of o-[3-(18)f-fluoropropyl]-α-methyl tyrosine in mesothelioma-bearing rodents
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3722965/
https://www.ncbi.nlm.nih.gov/pubmed/23936803
http://dx.doi.org/10.1155/2013/460619
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