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Investigation on the reactivity of nucleophilic radiohalogens with arylboronic acids in water: access to an efficient single-step method for the radioiodination and astatination of antibodies

Easy access to radioiodinated and (211)At-labelled bio(macro)molecules is essential to develop new strategies in nuclear imaging and targeted radionuclide therapy of cancers. Yet, the labelling of complex molecules with heavy radiohalogens is often poorly effective due to the multiple steps and inte...

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Autores principales: Berdal, Marion, Gouard, Sébastien, Eychenne, Romain, Marionneau-Lambot, Séverine, Croyal, Mikaël, Faivre-Chauvet, Alain, Chérel, Michel, Gaschet, Joëlle, Gestin, Jean-François, Guérard, François
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179031/
https://www.ncbi.nlm.nih.gov/pubmed/34163909
http://dx.doi.org/10.1039/d0sc05191h
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author Berdal, Marion
Gouard, Sébastien
Eychenne, Romain
Marionneau-Lambot, Séverine
Croyal, Mikaël
Faivre-Chauvet, Alain
Chérel, Michel
Gaschet, Joëlle
Gestin, Jean-François
Guérard, François
author_facet Berdal, Marion
Gouard, Sébastien
Eychenne, Romain
Marionneau-Lambot, Séverine
Croyal, Mikaël
Faivre-Chauvet, Alain
Chérel, Michel
Gaschet, Joëlle
Gestin, Jean-François
Guérard, François
author_sort Berdal, Marion
collection PubMed
description Easy access to radioiodinated and (211)At-labelled bio(macro)molecules is essential to develop new strategies in nuclear imaging and targeted radionuclide therapy of cancers. Yet, the labelling of complex molecules with heavy radiohalogens is often poorly effective due to the multiple steps and intermediate purifications needed. Herein, we investigate the potential of arylboron chemistry as an alternative approach for the late stage labelling of antibodies. The reactivity of a model precursor, 4-chlorobenzeneboronic acid (1) with nucleophilic iodine-125 and astatine-211 was at first investigated in aqueous conditions. In the presence of a copper(ii) catalyst and 1,10-phenanthroline, quantitative radiochemical yields (RCYs) were achieved within 30 minutes at room temperature. The optimum conditions were then applied to a CD138 targeting monoclonal antibody (mAb) that has previously been validated for imaging and therapy in a preclinical model of multiple myeloma. RCYs remained high (>80% for (125)I-labelling and >95% for (211)At-labelling), and the whole procedure led to increased specific activities within less time in comparison with previously reported methods. Biodistribution study in mice indicated that targeting properties of the radiolabelled mAb were well preserved, leading to a high tumour uptake in a CD138 expressing tumour model. The possibility of divergent synthesis from a common modified carrier protein demonstrated herein opens facilitated perspectives in radiotheranostic applications with the radioiodine/(211)At pairs. Overall, the possibility to develop radiolabelling kits offered by this procedure should facilitate its translation to clinical applications.
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spelling pubmed-81790312021-06-22 Investigation on the reactivity of nucleophilic radiohalogens with arylboronic acids in water: access to an efficient single-step method for the radioiodination and astatination of antibodies Berdal, Marion Gouard, Sébastien Eychenne, Romain Marionneau-Lambot, Séverine Croyal, Mikaël Faivre-Chauvet, Alain Chérel, Michel Gaschet, Joëlle Gestin, Jean-François Guérard, François Chem Sci Chemistry Easy access to radioiodinated and (211)At-labelled bio(macro)molecules is essential to develop new strategies in nuclear imaging and targeted radionuclide therapy of cancers. Yet, the labelling of complex molecules with heavy radiohalogens is often poorly effective due to the multiple steps and intermediate purifications needed. Herein, we investigate the potential of arylboron chemistry as an alternative approach for the late stage labelling of antibodies. The reactivity of a model precursor, 4-chlorobenzeneboronic acid (1) with nucleophilic iodine-125 and astatine-211 was at first investigated in aqueous conditions. In the presence of a copper(ii) catalyst and 1,10-phenanthroline, quantitative radiochemical yields (RCYs) were achieved within 30 minutes at room temperature. The optimum conditions were then applied to a CD138 targeting monoclonal antibody (mAb) that has previously been validated for imaging and therapy in a preclinical model of multiple myeloma. RCYs remained high (>80% for (125)I-labelling and >95% for (211)At-labelling), and the whole procedure led to increased specific activities within less time in comparison with previously reported methods. Biodistribution study in mice indicated that targeting properties of the radiolabelled mAb were well preserved, leading to a high tumour uptake in a CD138 expressing tumour model. The possibility of divergent synthesis from a common modified carrier protein demonstrated herein opens facilitated perspectives in radiotheranostic applications with the radioiodine/(211)At pairs. Overall, the possibility to develop radiolabelling kits offered by this procedure should facilitate its translation to clinical applications. The Royal Society of Chemistry 2020-11-23 /pmc/articles/PMC8179031/ /pubmed/34163909 http://dx.doi.org/10.1039/d0sc05191h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Berdal, Marion
Gouard, Sébastien
Eychenne, Romain
Marionneau-Lambot, Séverine
Croyal, Mikaël
Faivre-Chauvet, Alain
Chérel, Michel
Gaschet, Joëlle
Gestin, Jean-François
Guérard, François
Investigation on the reactivity of nucleophilic radiohalogens with arylboronic acids in water: access to an efficient single-step method for the radioiodination and astatination of antibodies
title Investigation on the reactivity of nucleophilic radiohalogens with arylboronic acids in water: access to an efficient single-step method for the radioiodination and astatination of antibodies
title_full Investigation on the reactivity of nucleophilic radiohalogens with arylboronic acids in water: access to an efficient single-step method for the radioiodination and astatination of antibodies
title_fullStr Investigation on the reactivity of nucleophilic radiohalogens with arylboronic acids in water: access to an efficient single-step method for the radioiodination and astatination of antibodies
title_full_unstemmed Investigation on the reactivity of nucleophilic radiohalogens with arylboronic acids in water: access to an efficient single-step method for the radioiodination and astatination of antibodies
title_short Investigation on the reactivity of nucleophilic radiohalogens with arylboronic acids in water: access to an efficient single-step method for the radioiodination and astatination of antibodies
title_sort investigation on the reactivity of nucleophilic radiohalogens with arylboronic acids in water: access to an efficient single-step method for the radioiodination and astatination of antibodies
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179031/
https://www.ncbi.nlm.nih.gov/pubmed/34163909
http://dx.doi.org/10.1039/d0sc05191h
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