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  3. 44Sc production from enriched 47TiO2 targets with a medical cyclotron.
 

44Sc production from enriched 47TiO2 targets with a medical cyclotron.

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BORIS DOI
10.48350/192360
Publisher DOI
10.1016/j.apradiso.2024.111220
PubMed ID
38301319
Description
44Sc is a β+-emitter which has been extensively studied for nuclear medicine applications. Its promising decay characteristics [t1/2 = 3.97 h, E [Formula: see text] = 632 keV (94.3%), Eγ = 1157 keV (99.9%); 1499 keV (0.91%)] make it highly attractive for clinical PET imaging, offering an alternative to the widely used 68Ga [t1/2 = 67.7 min, E [Formula: see text] = 836 keV (87.7%)]. Notably, its nearly fourfold longer half-life opens avenues for applications with biomolecules having extended biological half-lives and enables the centralized distribution of 44Sc radiopharmaceuticals. An additional advantage of employing 44Sc as a diagnostic radioisotope lies in its counterpart, the β--emitter 47Sc, which is currently under investigation for targeted radiotherapy. Together, they form an ideal theranostic pair, providing a comprehensive solution for both diagnostic imaging and therapeutic applications in nuclear medicine. At the Bern medical cyclotron, a study to optimize the production of scandium radioisotopes is currently ongoing. In this context, proton irradiation of titanium targets has been investigated, exploiting the reactions 47Ti(p,α)44Sc and 50Ti(p,α)47Sc. This approach enables the production of Sc radioisotopes within a single PET medical cyclotron facility, employing identical chemical procedures for target preparation and post-irradiation processing. In this paper, we report on cross-section measurements of the 47Ti(p,α)44Sc nuclear reaction using 95.7% enriched 47TiO2 targets. On the basis of the obtained results, the production yield and purity were calculated to assess the optimal irradiation conditions. Production tests were performed to confirm these findings.
Date of Publication
2024-04
Publication Type
Article
Subject(s)
500 Science > 530 Physics
Keyword(s)
Cross sections Medical cyclotron PET imaging Proton irradiation Scandium-44 Solid targets Theranostics
Language(s)
en
Contributor(s)
Dellepiane, Gaia
Physikalisches Institut - Laboratorium für Hochenergiephysik (LHEP)
Laboratorium für Hochenergiephysik (LHEP) - Medical Applications
Casolaro, Pierluigi
Laboratorium für Hochenergiephysik (LHEP) - Medical Applications
Physikalisches Institut - Laboratorium für Hochenergiephysik (LHEP)
Gottstein, Alexander Leonard
Laboratorium für Hochenergiephysik (LHEP) - Medical Applications
Physikalisches Institut - Laboratorium für Hochenergiephysik (LHEP)
Mateu Suau, Isidro
Physikalisches Institut - Laboratorium für Hochenergiephysik (LHEP)
Laboratorium für Hochenergiephysik (LHEP) - Medical Applications
Albert Einstein Center for Fundamental Physics (AEC)
Scampoli, Paolaorcid-logo
Physikalisches Institut - Laboratorium für Hochenergiephysik (LHEP)
Braccini, Saverio
Physikalisches Institut - Laboratorium für Hochenergiephysik (LHEP)
Laboratorium für Hochenergiephysik (LHEP) - Medical Applications
Albert Einstein Center for Fundamental Physics (AEC)
Additional Credits
Physikalisches Institut - Laboratorium für Hochenergiephysik (LHEP)
Laboratorium für Hochenergiephysik (LHEP) - Medical Applications
Series
Applied radiation and isotopes
Publisher
Elsevier
ISSN
1872-9800
Access(Rights)
open.access
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