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Enhanced Specific Activity by Multichelation of Exendin-3 Leads To Improved Image Quality and In Vivo Beta Cell Imaging

[Image: see text] Glucagon-like peptide-1 receptor (GLP-1R) targeting using radiolabeled exendin is a promising approach to noninvasively visualize and determine beta cell mass (BCM), which could help to unravel the pathophysiology of diabetes. However, saturation of the GLP-1R on beta cells occurs...

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Autores principales: Joosten, Lieke, Brom, Maarten, Peeters, Hanneke, Heskamp, Sandra, Béhé, Martin, Boerman, Otto, Gotthardt, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6150723/
https://www.ncbi.nlm.nih.gov/pubmed/29226686
http://dx.doi.org/10.1021/acs.molpharmaceut.7b00853
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author Joosten, Lieke
Brom, Maarten
Peeters, Hanneke
Heskamp, Sandra
Béhé, Martin
Boerman, Otto
Gotthardt, Martin
author_facet Joosten, Lieke
Brom, Maarten
Peeters, Hanneke
Heskamp, Sandra
Béhé, Martin
Boerman, Otto
Gotthardt, Martin
author_sort Joosten, Lieke
collection PubMed
description [Image: see text] Glucagon-like peptide-1 receptor (GLP-1R) targeting using radiolabeled exendin is a promising approach to noninvasively visualize and determine beta cell mass (BCM), which could help to unravel the pathophysiology of diabetes. However, saturation of the GLP-1R on beta cells occurs at low peptide doses, since the number of receptors expressed under physiological conditions is low. Therefore, tracers with high specific activities are required to sensitively image small variations in BCM. Here, we describe a novel exendin-3-based radiotracer with multiple chelators and determine its potential for in vivo beta cell imaging. Exendin-3 was modified by adding six lysine residues C-terminally conjugated with one, two, or six DTPA moieties. All compounds were labeled with (111)In and their GLP-1R affinity was determined in vitro using GLP-1R expressing cells. The in vivo behavior of the (111)In-labeled tracers was examined in BALB/c nude mice with a subcutaneous GLP-1R expressing tumor (INS-1). Brown Norway rats were used for SPECT visualization of the pancreatic BCM. Addition of six lysine and six DTPA residues (hexendin(40–45)) resulted in a 7-fold increase in specific activity (from 0.73 GBq/nmol to 5.54 GBq/nmol). IC(50) values varied between 5.2 and 69.5 nM. All compounds with two or six lysine and DTPA residues had a significantly lower receptor affinity than [Lys(40)(DTPA)]exendin-3 (4.4 nM, p < 0.05). The biodistribution in mice revealed no significant decrease in pancreatic uptake after addition of six lysine and DTPA molecules. Hexendin(40–45) showed a 6-fold increase in absolute (111)In uptake in the pancreas of Brown Norway rats compared to [Lys(40)(DTPA)]exendin-3 (182.7 ± 42.3 kBq vs 28.8 ± 6.0 kBq, p < 0.001). Visualization of the pancreas on SPECT was improved using hexendin(40–45), due to the higher count rate, achieved at the same peptide dose. In conclusion, hexendin(40–45) showed an improved visualization of the pancreas with SPECT. This tracer holds promise to sensitively and specifically detect small variations in BCM.
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spelling pubmed-61507232018-09-24 Enhanced Specific Activity by Multichelation of Exendin-3 Leads To Improved Image Quality and In Vivo Beta Cell Imaging Joosten, Lieke Brom, Maarten Peeters, Hanneke Heskamp, Sandra Béhé, Martin Boerman, Otto Gotthardt, Martin Mol Pharm [Image: see text] Glucagon-like peptide-1 receptor (GLP-1R) targeting using radiolabeled exendin is a promising approach to noninvasively visualize and determine beta cell mass (BCM), which could help to unravel the pathophysiology of diabetes. However, saturation of the GLP-1R on beta cells occurs at low peptide doses, since the number of receptors expressed under physiological conditions is low. Therefore, tracers with high specific activities are required to sensitively image small variations in BCM. Here, we describe a novel exendin-3-based radiotracer with multiple chelators and determine its potential for in vivo beta cell imaging. Exendin-3 was modified by adding six lysine residues C-terminally conjugated with one, two, or six DTPA moieties. All compounds were labeled with (111)In and their GLP-1R affinity was determined in vitro using GLP-1R expressing cells. The in vivo behavior of the (111)In-labeled tracers was examined in BALB/c nude mice with a subcutaneous GLP-1R expressing tumor (INS-1). Brown Norway rats were used for SPECT visualization of the pancreatic BCM. Addition of six lysine and six DTPA residues (hexendin(40–45)) resulted in a 7-fold increase in specific activity (from 0.73 GBq/nmol to 5.54 GBq/nmol). IC(50) values varied between 5.2 and 69.5 nM. All compounds with two or six lysine and DTPA residues had a significantly lower receptor affinity than [Lys(40)(DTPA)]exendin-3 (4.4 nM, p < 0.05). The biodistribution in mice revealed no significant decrease in pancreatic uptake after addition of six lysine and DTPA molecules. Hexendin(40–45) showed a 6-fold increase in absolute (111)In uptake in the pancreas of Brown Norway rats compared to [Lys(40)(DTPA)]exendin-3 (182.7 ± 42.3 kBq vs 28.8 ± 6.0 kBq, p < 0.001). Visualization of the pancreas on SPECT was improved using hexendin(40–45), due to the higher count rate, achieved at the same peptide dose. In conclusion, hexendin(40–45) showed an improved visualization of the pancreas with SPECT. This tracer holds promise to sensitively and specifically detect small variations in BCM. American Chemical Society 2017-12-11 2018-02-05 /pmc/articles/PMC6150723/ /pubmed/29226686 http://dx.doi.org/10.1021/acs.molpharmaceut.7b00853 Text en Copyright © 2017 American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes.
spellingShingle Joosten, Lieke
Brom, Maarten
Peeters, Hanneke
Heskamp, Sandra
Béhé, Martin
Boerman, Otto
Gotthardt, Martin
Enhanced Specific Activity by Multichelation of Exendin-3 Leads To Improved Image Quality and In Vivo Beta Cell Imaging
title Enhanced Specific Activity by Multichelation of Exendin-3 Leads To Improved Image Quality and In Vivo Beta Cell Imaging
title_full Enhanced Specific Activity by Multichelation of Exendin-3 Leads To Improved Image Quality and In Vivo Beta Cell Imaging
title_fullStr Enhanced Specific Activity by Multichelation of Exendin-3 Leads To Improved Image Quality and In Vivo Beta Cell Imaging
title_full_unstemmed Enhanced Specific Activity by Multichelation of Exendin-3 Leads To Improved Image Quality and In Vivo Beta Cell Imaging
title_short Enhanced Specific Activity by Multichelation of Exendin-3 Leads To Improved Image Quality and In Vivo Beta Cell Imaging
title_sort enhanced specific activity by multichelation of exendin-3 leads to improved image quality and in vivo beta cell imaging
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6150723/
https://www.ncbi.nlm.nih.gov/pubmed/29226686
http://dx.doi.org/10.1021/acs.molpharmaceut.7b00853
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