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Synthesis of a Bifunctional Cross‐Bridged Chelating Agent, Peptide Conjugation, and Comparison of (68)Ga Labeling and Complex Stability Characteristics with Established Chelators

[(68)Ga]Ga(3+) can be introduced into receptor‐specific peptidic carriers via different chelators to obtain radiotracers for Positron Emission Tomography imaging and the chosen chelating agent considerably influences the in vivo pharmacokinetics of the corresponding radiopeptides. A chelator that sh...

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Autores principales: Damerow, Helen, Wängler, Björn, Schirrmacher, Ralf, Fricker, Gert, Wängler, Carmen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10100262/
https://www.ncbi.nlm.nih.gov/pubmed/36259364
http://dx.doi.org/10.1002/cmdc.202200495
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author Damerow, Helen
Wängler, Björn
Schirrmacher, Ralf
Fricker, Gert
Wängler, Carmen
author_facet Damerow, Helen
Wängler, Björn
Schirrmacher, Ralf
Fricker, Gert
Wängler, Carmen
author_sort Damerow, Helen
collection PubMed
description [(68)Ga]Ga(3+) can be introduced into receptor‐specific peptidic carriers via different chelators to obtain radiotracers for Positron Emission Tomography imaging and the chosen chelating agent considerably influences the in vivo pharmacokinetics of the corresponding radiopeptides. A chelator that should be a valuable alternative to established chelating agents for (68)Ga‐radiolabeling of peptides would be a backbone‐functionalized variant of the chelator CB‐DO2A. Here, the bifunctional cross‐bridged chelating agent CB‐DO2A‐GA was developed and compared to the established chelators DOTA, NODA‐GA and DOTA‐GA. For this purpose, CB‐DO2A‐GA(tBu)(2) was introduced into the peptide Tyr(3)‐octreotate (TATE) and in direct comparison to the corresponding DOTA‐, NODA‐GA‐, and DOTA‐GA‐modified TATE analogs, CB‐DO2A‐GA‐TATE required harsher reaction conditions for (68)Ga‐incorporation. Regarding the hydrophilicity profile of the resulting radiopeptides, a decrease in hydrophilicity from [(68)Ga]Ga‐DOTA‐GA‐TATE (log( D(7.4)) of −4.11±0.11) to [(68)Ga]Ga‐CB‐DO2A‐GA‐TATE (−3.02±0.08) was observed. Assessing the stability against metabolic degradation and complex challenge, [(68)Ga]Ga‐CB‐DO2A‐GA demonstrated a very high kinetic inertness, exceeding that of [(68)Ga]Ga‐DOTA‐GA. Therefore, CB‐DO2A‐GA is a valuable alternative to established chelating agents for (68)Ga‐radiolabeling of peptides, especially when the formation of a very stable, positively charged (68)Ga‐complex is pursued.
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spelling pubmed-101002622023-04-14 Synthesis of a Bifunctional Cross‐Bridged Chelating Agent, Peptide Conjugation, and Comparison of (68)Ga Labeling and Complex Stability Characteristics with Established Chelators Damerow, Helen Wängler, Björn Schirrmacher, Ralf Fricker, Gert Wängler, Carmen ChemMedChem Research Articles [(68)Ga]Ga(3+) can be introduced into receptor‐specific peptidic carriers via different chelators to obtain radiotracers for Positron Emission Tomography imaging and the chosen chelating agent considerably influences the in vivo pharmacokinetics of the corresponding radiopeptides. A chelator that should be a valuable alternative to established chelating agents for (68)Ga‐radiolabeling of peptides would be a backbone‐functionalized variant of the chelator CB‐DO2A. Here, the bifunctional cross‐bridged chelating agent CB‐DO2A‐GA was developed and compared to the established chelators DOTA, NODA‐GA and DOTA‐GA. For this purpose, CB‐DO2A‐GA(tBu)(2) was introduced into the peptide Tyr(3)‐octreotate (TATE) and in direct comparison to the corresponding DOTA‐, NODA‐GA‐, and DOTA‐GA‐modified TATE analogs, CB‐DO2A‐GA‐TATE required harsher reaction conditions for (68)Ga‐incorporation. Regarding the hydrophilicity profile of the resulting radiopeptides, a decrease in hydrophilicity from [(68)Ga]Ga‐DOTA‐GA‐TATE (log( D(7.4)) of −4.11±0.11) to [(68)Ga]Ga‐CB‐DO2A‐GA‐TATE (−3.02±0.08) was observed. Assessing the stability against metabolic degradation and complex challenge, [(68)Ga]Ga‐CB‐DO2A‐GA demonstrated a very high kinetic inertness, exceeding that of [(68)Ga]Ga‐DOTA‐GA. Therefore, CB‐DO2A‐GA is a valuable alternative to established chelating agents for (68)Ga‐radiolabeling of peptides, especially when the formation of a very stable, positively charged (68)Ga‐complex is pursued. John Wiley and Sons Inc. 2022-11-07 2023-01-03 /pmc/articles/PMC10100262/ /pubmed/36259364 http://dx.doi.org/10.1002/cmdc.202200495 Text en © 2022 The Authors. ChemMedChem published by Wiley-VCH GmbH https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Damerow, Helen
Wängler, Björn
Schirrmacher, Ralf
Fricker, Gert
Wängler, Carmen
Synthesis of a Bifunctional Cross‐Bridged Chelating Agent, Peptide Conjugation, and Comparison of (68)Ga Labeling and Complex Stability Characteristics with Established Chelators
title Synthesis of a Bifunctional Cross‐Bridged Chelating Agent, Peptide Conjugation, and Comparison of (68)Ga Labeling and Complex Stability Characteristics with Established Chelators
title_full Synthesis of a Bifunctional Cross‐Bridged Chelating Agent, Peptide Conjugation, and Comparison of (68)Ga Labeling and Complex Stability Characteristics with Established Chelators
title_fullStr Synthesis of a Bifunctional Cross‐Bridged Chelating Agent, Peptide Conjugation, and Comparison of (68)Ga Labeling and Complex Stability Characteristics with Established Chelators
title_full_unstemmed Synthesis of a Bifunctional Cross‐Bridged Chelating Agent, Peptide Conjugation, and Comparison of (68)Ga Labeling and Complex Stability Characteristics with Established Chelators
title_short Synthesis of a Bifunctional Cross‐Bridged Chelating Agent, Peptide Conjugation, and Comparison of (68)Ga Labeling and Complex Stability Characteristics with Established Chelators
title_sort synthesis of a bifunctional cross‐bridged chelating agent, peptide conjugation, and comparison of (68)ga labeling and complex stability characteristics with established chelators
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10100262/
https://www.ncbi.nlm.nih.gov/pubmed/36259364
http://dx.doi.org/10.1002/cmdc.202200495
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