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Radiolabeling and Biological Evaluation of Novel (99m)Tc-Nitrido and (99m)Tc-Oxo Complexes with 4-Methoxy-(L)-Phenylalanine Dithiocarbamate for Tumor Imaging

To develop novel radiolabeled amino acid tumor imaging agents, 4-methoxy-(L)-phenylalanine dithiocarbamate (MOPADTC) was synthesized successfully, and two kinds of (99m)Tc-labeled complexes ([(99m)Tc]TcN-MOPADTC and [(99m)Tc]TcO-MOPADTC) with high radiochemical purities (RCP > 95%) were obtained....

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Detalles Bibliográficos
Autores principales: Yin, Guangxing, Ruan, Qing, Jiang, Yuhao, Zhang, Junbo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9607073/
https://www.ncbi.nlm.nih.gov/pubmed/36297631
http://dx.doi.org/10.3390/pharmaceutics14102196
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author Yin, Guangxing
Ruan, Qing
Jiang, Yuhao
Zhang, Junbo
author_facet Yin, Guangxing
Ruan, Qing
Jiang, Yuhao
Zhang, Junbo
author_sort Yin, Guangxing
collection PubMed
description To develop novel radiolabeled amino acid tumor imaging agents, 4-methoxy-(L)-phenylalanine dithiocarbamate (MOPADTC) was synthesized successfully, and two kinds of (99m)Tc-labeled complexes ([(99m)Tc]TcN-MOPADTC and [(99m)Tc]TcO-MOPADTC) with high radiochemical purities (RCP > 95%) were obtained. The in vitro stability and partition coefficient were determined, and the results show that both of these complexes have good in vitro stability; [(99m)Tc]TcO-MOPADTC is hydrophilic, while [(99m)Tc]TcN-MOPADTC is slightly lipophilic. The biodistribution of [(99m)Tc]TcN-MOPADTC and [(99m)Tc]TcO-MOPADTC in mice bearing S180 tumors shows that the tumor uptake and tumor/muscle ratio of [(99m)Tc]TcO-MOPADTC were higher than the tumor uptake and tumor/muscle ratio of [(99m)Tc]TcN-MOPADTC. In addition, the tumor retention of [(99m)Tc]TcO-MOPADTC is better than the tumor retention of [(99m)Tc]TcN-MOPADTC. A competitive inhibition assay was performed, and the results indicate that [(99m)Tc]TcO-MOPADTC may enter cells primarily via the (L)-alanine/(L)-serine/(L)-cysteine (ASC) system. Single-photon emission computed tomography (SPECT) imaging of [(99m)Tc]TcO-MOPADTC shows obvious accumulation in tumor sites, suggesting that [(99m)Tc]TcO-MOPADTC is a novel potential tumor-imaging agent.
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spelling pubmed-96070732022-10-28 Radiolabeling and Biological Evaluation of Novel (99m)Tc-Nitrido and (99m)Tc-Oxo Complexes with 4-Methoxy-(L)-Phenylalanine Dithiocarbamate for Tumor Imaging Yin, Guangxing Ruan, Qing Jiang, Yuhao Zhang, Junbo Pharmaceutics Article To develop novel radiolabeled amino acid tumor imaging agents, 4-methoxy-(L)-phenylalanine dithiocarbamate (MOPADTC) was synthesized successfully, and two kinds of (99m)Tc-labeled complexes ([(99m)Tc]TcN-MOPADTC and [(99m)Tc]TcO-MOPADTC) with high radiochemical purities (RCP > 95%) were obtained. The in vitro stability and partition coefficient were determined, and the results show that both of these complexes have good in vitro stability; [(99m)Tc]TcO-MOPADTC is hydrophilic, while [(99m)Tc]TcN-MOPADTC is slightly lipophilic. The biodistribution of [(99m)Tc]TcN-MOPADTC and [(99m)Tc]TcO-MOPADTC in mice bearing S180 tumors shows that the tumor uptake and tumor/muscle ratio of [(99m)Tc]TcO-MOPADTC were higher than the tumor uptake and tumor/muscle ratio of [(99m)Tc]TcN-MOPADTC. In addition, the tumor retention of [(99m)Tc]TcO-MOPADTC is better than the tumor retention of [(99m)Tc]TcN-MOPADTC. A competitive inhibition assay was performed, and the results indicate that [(99m)Tc]TcO-MOPADTC may enter cells primarily via the (L)-alanine/(L)-serine/(L)-cysteine (ASC) system. Single-photon emission computed tomography (SPECT) imaging of [(99m)Tc]TcO-MOPADTC shows obvious accumulation in tumor sites, suggesting that [(99m)Tc]TcO-MOPADTC is a novel potential tumor-imaging agent. MDPI 2022-10-15 /pmc/articles/PMC9607073/ /pubmed/36297631 http://dx.doi.org/10.3390/pharmaceutics14102196 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yin, Guangxing
Ruan, Qing
Jiang, Yuhao
Zhang, Junbo
Radiolabeling and Biological Evaluation of Novel (99m)Tc-Nitrido and (99m)Tc-Oxo Complexes with 4-Methoxy-(L)-Phenylalanine Dithiocarbamate for Tumor Imaging
title Radiolabeling and Biological Evaluation of Novel (99m)Tc-Nitrido and (99m)Tc-Oxo Complexes with 4-Methoxy-(L)-Phenylalanine Dithiocarbamate for Tumor Imaging
title_full Radiolabeling and Biological Evaluation of Novel (99m)Tc-Nitrido and (99m)Tc-Oxo Complexes with 4-Methoxy-(L)-Phenylalanine Dithiocarbamate for Tumor Imaging
title_fullStr Radiolabeling and Biological Evaluation of Novel (99m)Tc-Nitrido and (99m)Tc-Oxo Complexes with 4-Methoxy-(L)-Phenylalanine Dithiocarbamate for Tumor Imaging
title_full_unstemmed Radiolabeling and Biological Evaluation of Novel (99m)Tc-Nitrido and (99m)Tc-Oxo Complexes with 4-Methoxy-(L)-Phenylalanine Dithiocarbamate for Tumor Imaging
title_short Radiolabeling and Biological Evaluation of Novel (99m)Tc-Nitrido and (99m)Tc-Oxo Complexes with 4-Methoxy-(L)-Phenylalanine Dithiocarbamate for Tumor Imaging
title_sort radiolabeling and biological evaluation of novel (99m)tc-nitrido and (99m)tc-oxo complexes with 4-methoxy-(l)-phenylalanine dithiocarbamate for tumor imaging
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9607073/
https://www.ncbi.nlm.nih.gov/pubmed/36297631
http://dx.doi.org/10.3390/pharmaceutics14102196
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