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Localization of (99m)Tc-GRP Analogs in GRPR-Expressing Tumors: Effects of Peptide Length and Neprilysin Inhibition on Biological Responses

The overexpression of gastrin-releasing peptide receptors (GRPRs) in frequently occurring human tumors has provided the opportunity to use bombesin (BBN) analogs as radionuclide carriers to cancer sites for diagnostic and therapeutic purposes. We have been alternatively exploring human GRP motifs of...

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Autores principales: Kaloudi, Aikaterini, Lymperis, Emmanouil, Kanellopoulos, Panagiotis, Waser, Beatrice, de Jong, Marion, Krenning, Eric P., Reubi, Jean Claude, Nock, Berthold A., Maina, Theodosia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6469168/
https://www.ncbi.nlm.nih.gov/pubmed/30897789
http://dx.doi.org/10.3390/ph12010042
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author Kaloudi, Aikaterini
Lymperis, Emmanouil
Kanellopoulos, Panagiotis
Waser, Beatrice
de Jong, Marion
Krenning, Eric P.
Reubi, Jean Claude
Nock, Berthold A.
Maina, Theodosia
author_facet Kaloudi, Aikaterini
Lymperis, Emmanouil
Kanellopoulos, Panagiotis
Waser, Beatrice
de Jong, Marion
Krenning, Eric P.
Reubi, Jean Claude
Nock, Berthold A.
Maina, Theodosia
author_sort Kaloudi, Aikaterini
collection PubMed
description The overexpression of gastrin-releasing peptide receptors (GRPRs) in frequently occurring human tumors has provided the opportunity to use bombesin (BBN) analogs as radionuclide carriers to cancer sites for diagnostic and therapeutic purposes. We have been alternatively exploring human GRP motifs of higher GRPR selectivity compared to frog BBN sequences aiming to improve pharmacokinetic profiles. In the present study, we compared two differently truncated human endogenous GRP motifs: GRP(14–27) and GRP(18–27). An acyclic tetraamine was coupled at the N-terminus to allow for stable binding of the SPECT radionuclide (99m)Tc. Their biological profiles were compared in PC-3 cells and in mice without or with coinjection of phosphoramidon (PA) to induce transient neprilysin (NEP) inhibition in vivo. The two (99m)Tc-N(4)-GRP(14/18–27) radioligands displayed similar biological behavior in mice. Coinjection of PA exerted a profound effect on in vivo stability and translated into notably improved radiolabel localization in PC-3 experimental tumors. Hence, this study has shown that promising (99m)Tc-radiotracers for SPECT imaging may indeed derive from human GRP sequences. Radiotracer bioavailability was found to be of major significance. It could be improved during in situ NEP inhibition resulting in drastically enhanced uptake in GRPR-expressing lesions.
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spelling pubmed-64691682019-04-24 Localization of (99m)Tc-GRP Analogs in GRPR-Expressing Tumors: Effects of Peptide Length and Neprilysin Inhibition on Biological Responses Kaloudi, Aikaterini Lymperis, Emmanouil Kanellopoulos, Panagiotis Waser, Beatrice de Jong, Marion Krenning, Eric P. Reubi, Jean Claude Nock, Berthold A. Maina, Theodosia Pharmaceuticals (Basel) Article The overexpression of gastrin-releasing peptide receptors (GRPRs) in frequently occurring human tumors has provided the opportunity to use bombesin (BBN) analogs as radionuclide carriers to cancer sites for diagnostic and therapeutic purposes. We have been alternatively exploring human GRP motifs of higher GRPR selectivity compared to frog BBN sequences aiming to improve pharmacokinetic profiles. In the present study, we compared two differently truncated human endogenous GRP motifs: GRP(14–27) and GRP(18–27). An acyclic tetraamine was coupled at the N-terminus to allow for stable binding of the SPECT radionuclide (99m)Tc. Their biological profiles were compared in PC-3 cells and in mice without or with coinjection of phosphoramidon (PA) to induce transient neprilysin (NEP) inhibition in vivo. The two (99m)Tc-N(4)-GRP(14/18–27) radioligands displayed similar biological behavior in mice. Coinjection of PA exerted a profound effect on in vivo stability and translated into notably improved radiolabel localization in PC-3 experimental tumors. Hence, this study has shown that promising (99m)Tc-radiotracers for SPECT imaging may indeed derive from human GRP sequences. Radiotracer bioavailability was found to be of major significance. It could be improved during in situ NEP inhibition resulting in drastically enhanced uptake in GRPR-expressing lesions. MDPI 2019-03-20 /pmc/articles/PMC6469168/ /pubmed/30897789 http://dx.doi.org/10.3390/ph12010042 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kaloudi, Aikaterini
Lymperis, Emmanouil
Kanellopoulos, Panagiotis
Waser, Beatrice
de Jong, Marion
Krenning, Eric P.
Reubi, Jean Claude
Nock, Berthold A.
Maina, Theodosia
Localization of (99m)Tc-GRP Analogs in GRPR-Expressing Tumors: Effects of Peptide Length and Neprilysin Inhibition on Biological Responses
title Localization of (99m)Tc-GRP Analogs in GRPR-Expressing Tumors: Effects of Peptide Length and Neprilysin Inhibition on Biological Responses
title_full Localization of (99m)Tc-GRP Analogs in GRPR-Expressing Tumors: Effects of Peptide Length and Neprilysin Inhibition on Biological Responses
title_fullStr Localization of (99m)Tc-GRP Analogs in GRPR-Expressing Tumors: Effects of Peptide Length and Neprilysin Inhibition on Biological Responses
title_full_unstemmed Localization of (99m)Tc-GRP Analogs in GRPR-Expressing Tumors: Effects of Peptide Length and Neprilysin Inhibition on Biological Responses
title_short Localization of (99m)Tc-GRP Analogs in GRPR-Expressing Tumors: Effects of Peptide Length and Neprilysin Inhibition on Biological Responses
title_sort localization of (99m)tc-grp analogs in grpr-expressing tumors: effects of peptide length and neprilysin inhibition on biological responses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6469168/
https://www.ncbi.nlm.nih.gov/pubmed/30897789
http://dx.doi.org/10.3390/ph12010042
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