Cargando…

Synthesis, Physicochemical, Labeling and In Vivo Characterization of (44)Sc-Labeled DO3AM-NI as a Hypoxia-Sensitive PET Probe

Hypoxia promotes angiogenesis, which is crucial for tumor growth, and induces malignant progression and increases the therapeutic resistance. Positron emission tomography (PET) enables the detection of the hypoxic regions in tumors using 2-nitroimidazole-based radiopharmaceuticals. We describe here...

Descripción completa

Detalles Bibliográficos
Autores principales: Szücs, Dániel, Csupász, Tibor, Szabó, Judit P., Kis, Adrienn, Gyuricza, Barbara, Arató, Viktória, Forgács, Viktória, Vágner, Adrienn, Nagy, Gábor, Garai, Ildikó, Szikra, Dezső, Tóth, Imre, Trencsényi, György, Tircsó, Gyula, Fekete, Anikó
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9228955/
https://www.ncbi.nlm.nih.gov/pubmed/35745585
http://dx.doi.org/10.3390/ph15060666
_version_ 1784734611331350528
author Szücs, Dániel
Csupász, Tibor
Szabó, Judit P.
Kis, Adrienn
Gyuricza, Barbara
Arató, Viktória
Forgács, Viktória
Vágner, Adrienn
Nagy, Gábor
Garai, Ildikó
Szikra, Dezső
Tóth, Imre
Trencsényi, György
Tircsó, Gyula
Fekete, Anikó
author_facet Szücs, Dániel
Csupász, Tibor
Szabó, Judit P.
Kis, Adrienn
Gyuricza, Barbara
Arató, Viktória
Forgács, Viktória
Vágner, Adrienn
Nagy, Gábor
Garai, Ildikó
Szikra, Dezső
Tóth, Imre
Trencsényi, György
Tircsó, Gyula
Fekete, Anikó
author_sort Szücs, Dániel
collection PubMed
description Hypoxia promotes angiogenesis, which is crucial for tumor growth, and induces malignant progression and increases the therapeutic resistance. Positron emission tomography (PET) enables the detection of the hypoxic regions in tumors using 2-nitroimidazole-based radiopharmaceuticals. We describe here a physicochemical study of the Sc(DO3AM-NI) complex, which indicates: (a) relatively slow formation of the Sc(DO3AM-NI) chelate in acidic solution; (b) lower thermodynamic stability than the reference Sc(DOTA); (c) however, it is substantially more inert and consequently can be regarded as an excellent Sc-binder system. In addition, we report a comparison of (44)Sc-labeled DO3AM-NI with its known (68)Ga-labeled analog as a hypoxia PET probe. The in vivo and ex vivo biodistributions of (44)Sc- and (68)Ga-labeled DO3AM-NI in healthy and KB tumor-bearing SCID mice were examined 90 and 240 min after intravenous injection. No significant difference was found between the accumulation of (44)Sc- and (68)Ga-labeled DO3AM-NI in KB tumors. However, a significantly higher accumulation of [(68)Ga]Ga(DO3AM-NI) was found in liver, spleen, kidney, intestine, lung, heart and brain than for [(44)Sc]Sc(DO3AM-NI), leading to a lower tumor/background ratio. The tumor-to-muscle (T/M) ratio of [(44)Sc]Sc(DO3AM-NI) was approximately 10–15-fold higher than that of [(68)Ga]Ga(DO3AM-NI) at all time points. Thus, [(44)Sc]Sc(DO3AM-NI) allows the visualization of KB tumors with higher resolution, making it a promising hypoxia-specific PET radiotracer.
format Online
Article
Text
id pubmed-9228955
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-92289552022-06-25 Synthesis, Physicochemical, Labeling and In Vivo Characterization of (44)Sc-Labeled DO3AM-NI as a Hypoxia-Sensitive PET Probe Szücs, Dániel Csupász, Tibor Szabó, Judit P. Kis, Adrienn Gyuricza, Barbara Arató, Viktória Forgács, Viktória Vágner, Adrienn Nagy, Gábor Garai, Ildikó Szikra, Dezső Tóth, Imre Trencsényi, György Tircsó, Gyula Fekete, Anikó Pharmaceuticals (Basel) Article Hypoxia promotes angiogenesis, which is crucial for tumor growth, and induces malignant progression and increases the therapeutic resistance. Positron emission tomography (PET) enables the detection of the hypoxic regions in tumors using 2-nitroimidazole-based radiopharmaceuticals. We describe here a physicochemical study of the Sc(DO3AM-NI) complex, which indicates: (a) relatively slow formation of the Sc(DO3AM-NI) chelate in acidic solution; (b) lower thermodynamic stability than the reference Sc(DOTA); (c) however, it is substantially more inert and consequently can be regarded as an excellent Sc-binder system. In addition, we report a comparison of (44)Sc-labeled DO3AM-NI with its known (68)Ga-labeled analog as a hypoxia PET probe. The in vivo and ex vivo biodistributions of (44)Sc- and (68)Ga-labeled DO3AM-NI in healthy and KB tumor-bearing SCID mice were examined 90 and 240 min after intravenous injection. No significant difference was found between the accumulation of (44)Sc- and (68)Ga-labeled DO3AM-NI in KB tumors. However, a significantly higher accumulation of [(68)Ga]Ga(DO3AM-NI) was found in liver, spleen, kidney, intestine, lung, heart and brain than for [(44)Sc]Sc(DO3AM-NI), leading to a lower tumor/background ratio. The tumor-to-muscle (T/M) ratio of [(44)Sc]Sc(DO3AM-NI) was approximately 10–15-fold higher than that of [(68)Ga]Ga(DO3AM-NI) at all time points. Thus, [(44)Sc]Sc(DO3AM-NI) allows the visualization of KB tumors with higher resolution, making it a promising hypoxia-specific PET radiotracer. MDPI 2022-05-26 /pmc/articles/PMC9228955/ /pubmed/35745585 http://dx.doi.org/10.3390/ph15060666 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
Szücs, Dániel
Csupász, Tibor
Szabó, Judit P.
Kis, Adrienn
Gyuricza, Barbara
Arató, Viktória
Forgács, Viktória
Vágner, Adrienn
Nagy, Gábor
Garai, Ildikó
Szikra, Dezső
Tóth, Imre
Trencsényi, György
Tircsó, Gyula
Fekete, Anikó
Synthesis, Physicochemical, Labeling and In Vivo Characterization of (44)Sc-Labeled DO3AM-NI as a Hypoxia-Sensitive PET Probe
title Synthesis, Physicochemical, Labeling and In Vivo Characterization of (44)Sc-Labeled DO3AM-NI as a Hypoxia-Sensitive PET Probe
title_full Synthesis, Physicochemical, Labeling and In Vivo Characterization of (44)Sc-Labeled DO3AM-NI as a Hypoxia-Sensitive PET Probe
title_fullStr Synthesis, Physicochemical, Labeling and In Vivo Characterization of (44)Sc-Labeled DO3AM-NI as a Hypoxia-Sensitive PET Probe
title_full_unstemmed Synthesis, Physicochemical, Labeling and In Vivo Characterization of (44)Sc-Labeled DO3AM-NI as a Hypoxia-Sensitive PET Probe
title_short Synthesis, Physicochemical, Labeling and In Vivo Characterization of (44)Sc-Labeled DO3AM-NI as a Hypoxia-Sensitive PET Probe
title_sort synthesis, physicochemical, labeling and in vivo characterization of (44)sc-labeled do3am-ni as a hypoxia-sensitive pet probe
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9228955/
https://www.ncbi.nlm.nih.gov/pubmed/35745585
http://dx.doi.org/10.3390/ph15060666
work_keys_str_mv AT szucsdaniel synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe
AT csupasztibor synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe
AT szabojuditp synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe
AT kisadrienn synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe
AT gyuriczabarbara synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe
AT aratoviktoria synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe
AT forgacsviktoria synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe
AT vagneradrienn synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe
AT nagygabor synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe
AT garaiildiko synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe
AT szikradezso synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe
AT tothimre synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe
AT trencsenyigyorgy synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe
AT tircsogyula synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe
AT feketeaniko synthesisphysicochemicallabelingandinvivocharacterizationof44sclabeleddo3amniasahypoxiasensitivepetprobe