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Development of (99m)Tc-N4-NIM for Molecular Imaging of Tumor Hypoxia

The nitro group of 2-nitroimidazole (NIM) enters the tumor cells and is bioreductively activated and fixed in the hypoxia cells. 1,4,8,11-tetraazacyclotetradecane (N4) has shown to be a stable chelator for (99m)Tc. The present study was aimed to develop (99m)Tc-cyclam-2-nitroimidazole ((99m)Tc-N4-NI...

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Autores principales: Ali, Mohammad S., Kong, Fan-Lin, Rollo, Alex, Mendez, Richard, Kohanim, Saady, Smith, Daniel Lee, Yang, David J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3376529/
https://www.ncbi.nlm.nih.gov/pubmed/22719210
http://dx.doi.org/10.1155/2012/828139
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author Ali, Mohammad S.
Kong, Fan-Lin
Rollo, Alex
Mendez, Richard
Kohanim, Saady
Smith, Daniel Lee
Yang, David J.
author_facet Ali, Mohammad S.
Kong, Fan-Lin
Rollo, Alex
Mendez, Richard
Kohanim, Saady
Smith, Daniel Lee
Yang, David J.
author_sort Ali, Mohammad S.
collection PubMed
description The nitro group of 2-nitroimidazole (NIM) enters the tumor cells and is bioreductively activated and fixed in the hypoxia cells. 1,4,8,11-tetraazacyclotetradecane (N4) has shown to be a stable chelator for (99m)Tc. The present study was aimed to develop (99m)Tc-cyclam-2-nitroimidazole ((99m)Tc-N4-NIM) for tumor hypoxia imaging. N4-NIM precursor was synthesized by reacting N4-oxalate and 1,3-dibromopropane-NIM, yielded 14% (total synthesis). Cell uptake of (99m)Tc-N4-NIM and (99m)Tc-N4 was obtained in 13762 rat mammary tumor cells and mesothelioma cells in 6-well plates. Tissue distribution of (99m)Tc-N4-NIM was evaluated in breast-tumor-bearing rats at 0.5–4 hrs. Tumor oxygen tension was measured using an oxygen probe. Planar imaging was performed in the tumor-bearing rat and rabbit models. Radiochemical purity of (99m)Tc-N4-NIM was >96% by HPLC. Cell uptake of (99m)Tc-N4-NIM was higher than (99m)Tc-N4 in both cell lines. Biodistribution of (99m)Tc-N4-NIM showed increased tumor-to-blood and tumor-to-muscle count density ratios as a function of time. Oxygen tension in tumor tissue was 6–10 mmHg compared to 40–50 mmHg in normal muscle tissue. Planar imaging studies confirmed that the tumors could be visualized clearly with (99m)Tc-N4-NIM in animal models. Efficient synthesis of N4-NIM was achieved. (99m)Tc-N4-NIM is a novel hypoxic probe and may be useful in evaluating cancer therapy.
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spelling pubmed-33765292012-06-20 Development of (99m)Tc-N4-NIM for Molecular Imaging of Tumor Hypoxia Ali, Mohammad S. Kong, Fan-Lin Rollo, Alex Mendez, Richard Kohanim, Saady Smith, Daniel Lee Yang, David J. J Biomed Biotechnol Research Article The nitro group of 2-nitroimidazole (NIM) enters the tumor cells and is bioreductively activated and fixed in the hypoxia cells. 1,4,8,11-tetraazacyclotetradecane (N4) has shown to be a stable chelator for (99m)Tc. The present study was aimed to develop (99m)Tc-cyclam-2-nitroimidazole ((99m)Tc-N4-NIM) for tumor hypoxia imaging. N4-NIM precursor was synthesized by reacting N4-oxalate and 1,3-dibromopropane-NIM, yielded 14% (total synthesis). Cell uptake of (99m)Tc-N4-NIM and (99m)Tc-N4 was obtained in 13762 rat mammary tumor cells and mesothelioma cells in 6-well plates. Tissue distribution of (99m)Tc-N4-NIM was evaluated in breast-tumor-bearing rats at 0.5–4 hrs. Tumor oxygen tension was measured using an oxygen probe. Planar imaging was performed in the tumor-bearing rat and rabbit models. Radiochemical purity of (99m)Tc-N4-NIM was >96% by HPLC. Cell uptake of (99m)Tc-N4-NIM was higher than (99m)Tc-N4 in both cell lines. Biodistribution of (99m)Tc-N4-NIM showed increased tumor-to-blood and tumor-to-muscle count density ratios as a function of time. Oxygen tension in tumor tissue was 6–10 mmHg compared to 40–50 mmHg in normal muscle tissue. Planar imaging studies confirmed that the tumors could be visualized clearly with (99m)Tc-N4-NIM in animal models. Efficient synthesis of N4-NIM was achieved. (99m)Tc-N4-NIM is a novel hypoxic probe and may be useful in evaluating cancer therapy. Hindawi Publishing Corporation 2012 2012-06-10 /pmc/articles/PMC3376529/ /pubmed/22719210 http://dx.doi.org/10.1155/2012/828139 Text en Copyright © 2012 Mohammad S. Ali et al. 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
Ali, Mohammad S.
Kong, Fan-Lin
Rollo, Alex
Mendez, Richard
Kohanim, Saady
Smith, Daniel Lee
Yang, David J.
Development of (99m)Tc-N4-NIM for Molecular Imaging of Tumor Hypoxia
title Development of (99m)Tc-N4-NIM for Molecular Imaging of Tumor Hypoxia
title_full Development of (99m)Tc-N4-NIM for Molecular Imaging of Tumor Hypoxia
title_fullStr Development of (99m)Tc-N4-NIM for Molecular Imaging of Tumor Hypoxia
title_full_unstemmed Development of (99m)Tc-N4-NIM for Molecular Imaging of Tumor Hypoxia
title_short Development of (99m)Tc-N4-NIM for Molecular Imaging of Tumor Hypoxia
title_sort development of (99m)tc-n4-nim for molecular imaging of tumor hypoxia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3376529/
https://www.ncbi.nlm.nih.gov/pubmed/22719210
http://dx.doi.org/10.1155/2012/828139
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