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A (99m)Tc-Labelled Tetrazine for Bioorthogonal Chemistry. Synthesis and Biodistribution Studies with Small Molecule trans-Cyclooctene Derivatives

A convenient strategy to radiolabel a hydrazinonicotonic acid (HYNIC)-derived tetrazine with (99m)Tc was developed, and its utility for creating probes to image bone metabolism and bacterial infection using both active and pretargeting strategies was demonstrated. The (99m)Tc-labelled HYNIC-tetrazin...

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Autores principales: Vito, Alyssa, Alarabi, Hussain, Czorny, Shannon, Beiraghi, Omid, Kent, Jeff, Janzen, Nancy, Genady, Afaf R., Alkarmi, Salma A., Rathmann, Stephanie, Naperstkow, Zoya, Blacker, Megan, Llano, Lisset, Berti, Paul J., Valliant, John F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5147877/
https://www.ncbi.nlm.nih.gov/pubmed/27936007
http://dx.doi.org/10.1371/journal.pone.0167425
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author Vito, Alyssa
Alarabi, Hussain
Czorny, Shannon
Beiraghi, Omid
Kent, Jeff
Janzen, Nancy
Genady, Afaf R.
Alkarmi, Salma A.
Rathmann, Stephanie
Naperstkow, Zoya
Blacker, Megan
Llano, Lisset
Berti, Paul J.
Valliant, John F.
author_facet Vito, Alyssa
Alarabi, Hussain
Czorny, Shannon
Beiraghi, Omid
Kent, Jeff
Janzen, Nancy
Genady, Afaf R.
Alkarmi, Salma A.
Rathmann, Stephanie
Naperstkow, Zoya
Blacker, Megan
Llano, Lisset
Berti, Paul J.
Valliant, John F.
author_sort Vito, Alyssa
collection PubMed
description A convenient strategy to radiolabel a hydrazinonicotonic acid (HYNIC)-derived tetrazine with (99m)Tc was developed, and its utility for creating probes to image bone metabolism and bacterial infection using both active and pretargeting strategies was demonstrated. The (99m)Tc-labelled HYNIC-tetrazine was synthesized in 75% yield and exhibited high stability in vitro and in vivo. A trans-cyclooctene (TCO)-labelled bisphosphonate (TCO-BP) that binds to regions of active calcium metabolism was used to evaluate the utility of the labelled tetrazine for bioorthogonal chemistry. The pretargeting approach, with (99m)Tc-HYNIC-tetrazine administered to mice one hour after TCO-BP, showed significant uptake of radioactivity in regions of active bone metabolism (knees and shoulders) at 6 hours post-injection. For comparison, TCO-BP was reacted with (99m)Tc-HYNIC-tetrazine before injection and this active targeting also showed high specific uptake in the knees and shoulders, whereas control (99m)Tc-HYNIC-tetrazine alone did not. A TCO-vancomycin derivative was similarly employed for targeting Staphylococcus aureus infection in vitro and in vivo. Pretargeting and active targeting strategies showed 2.5- and 3-fold uptake, respectively, at the sites of a calf-muscle infection in a murine model, compared to the contralateral control muscle. These results demonstrate the utility of the (99m)Tc-HYNIC-tetrazine for preparing new technetium radiopharmaceuticals, including those based on small molecule targeting constructs containing TCO, using either active or pretargeting strategies.
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spelling pubmed-51478772016-12-28 A (99m)Tc-Labelled Tetrazine for Bioorthogonal Chemistry. Synthesis and Biodistribution Studies with Small Molecule trans-Cyclooctene Derivatives Vito, Alyssa Alarabi, Hussain Czorny, Shannon Beiraghi, Omid Kent, Jeff Janzen, Nancy Genady, Afaf R. Alkarmi, Salma A. Rathmann, Stephanie Naperstkow, Zoya Blacker, Megan Llano, Lisset Berti, Paul J. Valliant, John F. PLoS One Research Article A convenient strategy to radiolabel a hydrazinonicotonic acid (HYNIC)-derived tetrazine with (99m)Tc was developed, and its utility for creating probes to image bone metabolism and bacterial infection using both active and pretargeting strategies was demonstrated. The (99m)Tc-labelled HYNIC-tetrazine was synthesized in 75% yield and exhibited high stability in vitro and in vivo. A trans-cyclooctene (TCO)-labelled bisphosphonate (TCO-BP) that binds to regions of active calcium metabolism was used to evaluate the utility of the labelled tetrazine for bioorthogonal chemistry. The pretargeting approach, with (99m)Tc-HYNIC-tetrazine administered to mice one hour after TCO-BP, showed significant uptake of radioactivity in regions of active bone metabolism (knees and shoulders) at 6 hours post-injection. For comparison, TCO-BP was reacted with (99m)Tc-HYNIC-tetrazine before injection and this active targeting also showed high specific uptake in the knees and shoulders, whereas control (99m)Tc-HYNIC-tetrazine alone did not. A TCO-vancomycin derivative was similarly employed for targeting Staphylococcus aureus infection in vitro and in vivo. Pretargeting and active targeting strategies showed 2.5- and 3-fold uptake, respectively, at the sites of a calf-muscle infection in a murine model, compared to the contralateral control muscle. These results demonstrate the utility of the (99m)Tc-HYNIC-tetrazine for preparing new technetium radiopharmaceuticals, including those based on small molecule targeting constructs containing TCO, using either active or pretargeting strategies. Public Library of Science 2016-12-09 /pmc/articles/PMC5147877/ /pubmed/27936007 http://dx.doi.org/10.1371/journal.pone.0167425 Text en © 2016 Vito et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Vito, Alyssa
Alarabi, Hussain
Czorny, Shannon
Beiraghi, Omid
Kent, Jeff
Janzen, Nancy
Genady, Afaf R.
Alkarmi, Salma A.
Rathmann, Stephanie
Naperstkow, Zoya
Blacker, Megan
Llano, Lisset
Berti, Paul J.
Valliant, John F.
A (99m)Tc-Labelled Tetrazine for Bioorthogonal Chemistry. Synthesis and Biodistribution Studies with Small Molecule trans-Cyclooctene Derivatives
title A (99m)Tc-Labelled Tetrazine for Bioorthogonal Chemistry. Synthesis and Biodistribution Studies with Small Molecule trans-Cyclooctene Derivatives
title_full A (99m)Tc-Labelled Tetrazine for Bioorthogonal Chemistry. Synthesis and Biodistribution Studies with Small Molecule trans-Cyclooctene Derivatives
title_fullStr A (99m)Tc-Labelled Tetrazine for Bioorthogonal Chemistry. Synthesis and Biodistribution Studies with Small Molecule trans-Cyclooctene Derivatives
title_full_unstemmed A (99m)Tc-Labelled Tetrazine for Bioorthogonal Chemistry. Synthesis and Biodistribution Studies with Small Molecule trans-Cyclooctene Derivatives
title_short A (99m)Tc-Labelled Tetrazine for Bioorthogonal Chemistry. Synthesis and Biodistribution Studies with Small Molecule trans-Cyclooctene Derivatives
title_sort (99m)tc-labelled tetrazine for bioorthogonal chemistry. synthesis and biodistribution studies with small molecule trans-cyclooctene derivatives
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5147877/
https://www.ncbi.nlm.nih.gov/pubmed/27936007
http://dx.doi.org/10.1371/journal.pone.0167425
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