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Comparison of Ga-68-Labeled Fusarinine C-Based Multivalent RGD Conjugates and [(68)Ga]NODAGA-RGD—In Vivo Imaging Studies in Human Xenograft Tumors

PURPOSE: Multimeric arginine-glycine-aspartic acid (RGD) peptides have advantages for imaging integrin α(v)β(3) expression. Here, we compared the in vitro and in vivo behavior of three different Ga-68-labeled multimeric Fusarinine C-RGD (FSC-RGD) conjugates, whereby RGD was coupled directly, via a s...

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Autores principales: Zhai, Chuangyan, Franssen, Gerben M., Petrik, Milos, Laverman, Peter, Summer, Dominik, Rangger, Christine, Haubner, Roland, Haas, Hubertus, Decristoforo, Clemens
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5010584/
https://www.ncbi.nlm.nih.gov/pubmed/26905697
http://dx.doi.org/10.1007/s11307-016-0931-3
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author Zhai, Chuangyan
Franssen, Gerben M.
Petrik, Milos
Laverman, Peter
Summer, Dominik
Rangger, Christine
Haubner, Roland
Haas, Hubertus
Decristoforo, Clemens
author_facet Zhai, Chuangyan
Franssen, Gerben M.
Petrik, Milos
Laverman, Peter
Summer, Dominik
Rangger, Christine
Haubner, Roland
Haas, Hubertus
Decristoforo, Clemens
author_sort Zhai, Chuangyan
collection PubMed
description PURPOSE: Multimeric arginine-glycine-aspartic acid (RGD) peptides have advantages for imaging integrin α(v)β(3) expression. Here, we compared the in vitro and in vivo behavior of three different Ga-68-labeled multimeric Fusarinine C-RGD (FSC-RGD) conjugates, whereby RGD was coupled directly, via a succinic acid or PEG linker (FSC(RGDfE)(3), FSC(succ-RGD)(3), FSC(Mal-RGD)(3)). The positron emission tomography/X-ray computed tomography (PET/CT) imaging properties were further compared using [(68)Ga]FSC(succ-RGD)(3) with the monomeric [(68)Ga]NODAGA-RGD in a murine tumor model. PROCEDURE: FSC-RGD conjugates were labeled with Ga-68, and stability properties were studied. For in vitro characterization, the partition coefficient, integrin α(v)β(3) binding affinity, and cell uptake were determined. To characterize the in vivo properties, biodistribution studies and microPET/CT were carried out using mice bearing either human M21/M21-L melanoma or human U87MG glioblastoma tumor xenografts. RESULTS: All FSC-RGD conjugates were quantitatively labeled with Ga-68 within 10 min at RT. The [(68)Ga]FSC-RGD conjugates exhibited high stability and hydrophilic character, with only minor differences between the different conjugates. In vitro and in vivo studies showed enhanced integrin α(v)β(3) binding affinity, receptor-selective tumor uptake, and rapid renal excretion resulting in good imaging properties. CONCLUSIONS: The type of linker between FSC and RGD had no pronounced effect on targeting properties of [(68)Ga]FSC-RGD trimers. In particular, [(68)Ga]FSC(succ-RGD)(3) exhibited improved properties compared to [(68)Ga]NODAGA-RGD, making it an alternative for imaging integrin α(v)β(3) expression. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s11307-016-0931-3) contains supplementary material, which is available to authorized users.
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spelling pubmed-50105842016-09-16 Comparison of Ga-68-Labeled Fusarinine C-Based Multivalent RGD Conjugates and [(68)Ga]NODAGA-RGD—In Vivo Imaging Studies in Human Xenograft Tumors Zhai, Chuangyan Franssen, Gerben M. Petrik, Milos Laverman, Peter Summer, Dominik Rangger, Christine Haubner, Roland Haas, Hubertus Decristoforo, Clemens Mol Imaging Biol Research Article PURPOSE: Multimeric arginine-glycine-aspartic acid (RGD) peptides have advantages for imaging integrin α(v)β(3) expression. Here, we compared the in vitro and in vivo behavior of three different Ga-68-labeled multimeric Fusarinine C-RGD (FSC-RGD) conjugates, whereby RGD was coupled directly, via a succinic acid or PEG linker (FSC(RGDfE)(3), FSC(succ-RGD)(3), FSC(Mal-RGD)(3)). The positron emission tomography/X-ray computed tomography (PET/CT) imaging properties were further compared using [(68)Ga]FSC(succ-RGD)(3) with the monomeric [(68)Ga]NODAGA-RGD in a murine tumor model. PROCEDURE: FSC-RGD conjugates were labeled with Ga-68, and stability properties were studied. For in vitro characterization, the partition coefficient, integrin α(v)β(3) binding affinity, and cell uptake were determined. To characterize the in vivo properties, biodistribution studies and microPET/CT were carried out using mice bearing either human M21/M21-L melanoma or human U87MG glioblastoma tumor xenografts. RESULTS: All FSC-RGD conjugates were quantitatively labeled with Ga-68 within 10 min at RT. The [(68)Ga]FSC-RGD conjugates exhibited high stability and hydrophilic character, with only minor differences between the different conjugates. In vitro and in vivo studies showed enhanced integrin α(v)β(3) binding affinity, receptor-selective tumor uptake, and rapid renal excretion resulting in good imaging properties. CONCLUSIONS: The type of linker between FSC and RGD had no pronounced effect on targeting properties of [(68)Ga]FSC-RGD trimers. In particular, [(68)Ga]FSC(succ-RGD)(3) exhibited improved properties compared to [(68)Ga]NODAGA-RGD, making it an alternative for imaging integrin α(v)β(3) expression. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s11307-016-0931-3) contains supplementary material, which is available to authorized users. Springer US 2016-02-23 2016 /pmc/articles/PMC5010584/ /pubmed/26905697 http://dx.doi.org/10.1007/s11307-016-0931-3 Text en © The Author(s) 2016 Open Access This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Research Article
Zhai, Chuangyan
Franssen, Gerben M.
Petrik, Milos
Laverman, Peter
Summer, Dominik
Rangger, Christine
Haubner, Roland
Haas, Hubertus
Decristoforo, Clemens
Comparison of Ga-68-Labeled Fusarinine C-Based Multivalent RGD Conjugates and [(68)Ga]NODAGA-RGD—In Vivo Imaging Studies in Human Xenograft Tumors
title Comparison of Ga-68-Labeled Fusarinine C-Based Multivalent RGD Conjugates and [(68)Ga]NODAGA-RGD—In Vivo Imaging Studies in Human Xenograft Tumors
title_full Comparison of Ga-68-Labeled Fusarinine C-Based Multivalent RGD Conjugates and [(68)Ga]NODAGA-RGD—In Vivo Imaging Studies in Human Xenograft Tumors
title_fullStr Comparison of Ga-68-Labeled Fusarinine C-Based Multivalent RGD Conjugates and [(68)Ga]NODAGA-RGD—In Vivo Imaging Studies in Human Xenograft Tumors
title_full_unstemmed Comparison of Ga-68-Labeled Fusarinine C-Based Multivalent RGD Conjugates and [(68)Ga]NODAGA-RGD—In Vivo Imaging Studies in Human Xenograft Tumors
title_short Comparison of Ga-68-Labeled Fusarinine C-Based Multivalent RGD Conjugates and [(68)Ga]NODAGA-RGD—In Vivo Imaging Studies in Human Xenograft Tumors
title_sort comparison of ga-68-labeled fusarinine c-based multivalent rgd conjugates and [(68)ga]nodaga-rgd—in vivo imaging studies in human xenograft tumors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5010584/
https://www.ncbi.nlm.nih.gov/pubmed/26905697
http://dx.doi.org/10.1007/s11307-016-0931-3
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