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Clickable C-Glycosyl Scaffold for the Development of a Dual Fluorescent and [(18)F]fluorinated Cyanine-Containing Probe and Preliminary In Vitro/Vivo Evaluation by Fluorescence Imaging

Considering the individual characteristics of positron emission tomography (PET) and optical imaging (OI) in terms of sensitivity, spatial resolution, and tissue penetration, the development of dual imaging agents for bimodal PET/OI imaging is a growing field. A current major breakthrough in this fi...

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Autores principales: Ariztia, Julen, Jouad, Kamal, Jouan-Hureaux, Valérie, Pierson, Julien, Collet, Charlotte, Kuhnast, Bertrand, Selmeczi, Katalin, Boura, Cédric, Lamandé-Langle, Sandrine, Pellegrini Moïse, Nadia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9782470/
https://www.ncbi.nlm.nih.gov/pubmed/36558941
http://dx.doi.org/10.3390/ph15121490
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author Ariztia, Julen
Jouad, Kamal
Jouan-Hureaux, Valérie
Pierson, Julien
Collet, Charlotte
Kuhnast, Bertrand
Selmeczi, Katalin
Boura, Cédric
Lamandé-Langle, Sandrine
Pellegrini Moïse, Nadia
author_facet Ariztia, Julen
Jouad, Kamal
Jouan-Hureaux, Valérie
Pierson, Julien
Collet, Charlotte
Kuhnast, Bertrand
Selmeczi, Katalin
Boura, Cédric
Lamandé-Langle, Sandrine
Pellegrini Moïse, Nadia
author_sort Ariztia, Julen
collection PubMed
description Considering the individual characteristics of positron emission tomography (PET) and optical imaging (OI) in terms of sensitivity, spatial resolution, and tissue penetration, the development of dual imaging agents for bimodal PET/OI imaging is a growing field. A current major breakthrough in this field is the design of monomolecular agent displaying both a radioisotope for PET and a fluorescent dye for OI. We took advantage of the multifunctionalities allowed by a clickable C-glycosyl scaffold to gather the different elements. We describe, for the first time, the synthesis of a cyanine-based dual PET/OI imaging probe based on a versatile synthetic strategy and its direct radiofluorination via [(18)F]F-C bond formation. The non-radioactive dual imaging probe coupled with two c(RGDfK) peptides was evaluated in vitro and in vivo in fluorescence imaging. The binding on α(v)β(3) integrin (IC(50) = 16 nM) demonstrated the efficiency of the dimeric structure and PEG linkers in maintaining the affinity. In vivo fluorescence imaging of U-87 MG engrafted nude mice showed a high tumor uptake (40- and 100-fold increase for orthotopic and ectopic brain tumors, respectively, compared to healthy brain). In vitro and in vivo evaluations and resection of the ectopic tumor demonstrated the potential of the conjugate in glioblastoma cancer diagnosis and image-guided surgery.
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spelling pubmed-97824702022-12-24 Clickable C-Glycosyl Scaffold for the Development of a Dual Fluorescent and [(18)F]fluorinated Cyanine-Containing Probe and Preliminary In Vitro/Vivo Evaluation by Fluorescence Imaging Ariztia, Julen Jouad, Kamal Jouan-Hureaux, Valérie Pierson, Julien Collet, Charlotte Kuhnast, Bertrand Selmeczi, Katalin Boura, Cédric Lamandé-Langle, Sandrine Pellegrini Moïse, Nadia Pharmaceuticals (Basel) Article Considering the individual characteristics of positron emission tomography (PET) and optical imaging (OI) in terms of sensitivity, spatial resolution, and tissue penetration, the development of dual imaging agents for bimodal PET/OI imaging is a growing field. A current major breakthrough in this field is the design of monomolecular agent displaying both a radioisotope for PET and a fluorescent dye for OI. We took advantage of the multifunctionalities allowed by a clickable C-glycosyl scaffold to gather the different elements. We describe, for the first time, the synthesis of a cyanine-based dual PET/OI imaging probe based on a versatile synthetic strategy and its direct radiofluorination via [(18)F]F-C bond formation. The non-radioactive dual imaging probe coupled with two c(RGDfK) peptides was evaluated in vitro and in vivo in fluorescence imaging. The binding on α(v)β(3) integrin (IC(50) = 16 nM) demonstrated the efficiency of the dimeric structure and PEG linkers in maintaining the affinity. In vivo fluorescence imaging of U-87 MG engrafted nude mice showed a high tumor uptake (40- and 100-fold increase for orthotopic and ectopic brain tumors, respectively, compared to healthy brain). In vitro and in vivo evaluations and resection of the ectopic tumor demonstrated the potential of the conjugate in glioblastoma cancer diagnosis and image-guided surgery. MDPI 2022-11-29 /pmc/articles/PMC9782470/ /pubmed/36558941 http://dx.doi.org/10.3390/ph15121490 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ariztia, Julen
Jouad, Kamal
Jouan-Hureaux, Valérie
Pierson, Julien
Collet, Charlotte
Kuhnast, Bertrand
Selmeczi, Katalin
Boura, Cédric
Lamandé-Langle, Sandrine
Pellegrini Moïse, Nadia
Clickable C-Glycosyl Scaffold for the Development of a Dual Fluorescent and [(18)F]fluorinated Cyanine-Containing Probe and Preliminary In Vitro/Vivo Evaluation by Fluorescence Imaging
title Clickable C-Glycosyl Scaffold for the Development of a Dual Fluorescent and [(18)F]fluorinated Cyanine-Containing Probe and Preliminary In Vitro/Vivo Evaluation by Fluorescence Imaging
title_full Clickable C-Glycosyl Scaffold for the Development of a Dual Fluorescent and [(18)F]fluorinated Cyanine-Containing Probe and Preliminary In Vitro/Vivo Evaluation by Fluorescence Imaging
title_fullStr Clickable C-Glycosyl Scaffold for the Development of a Dual Fluorescent and [(18)F]fluorinated Cyanine-Containing Probe and Preliminary In Vitro/Vivo Evaluation by Fluorescence Imaging
title_full_unstemmed Clickable C-Glycosyl Scaffold for the Development of a Dual Fluorescent and [(18)F]fluorinated Cyanine-Containing Probe and Preliminary In Vitro/Vivo Evaluation by Fluorescence Imaging
title_short Clickable C-Glycosyl Scaffold for the Development of a Dual Fluorescent and [(18)F]fluorinated Cyanine-Containing Probe and Preliminary In Vitro/Vivo Evaluation by Fluorescence Imaging
title_sort clickable c-glycosyl scaffold for the development of a dual fluorescent and [(18)f]fluorinated cyanine-containing probe and preliminary in vitro/vivo evaluation by fluorescence imaging
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9782470/
https://www.ncbi.nlm.nih.gov/pubmed/36558941
http://dx.doi.org/10.3390/ph15121490
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