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Nucl Med Commun ; 41(9): 977-985, 2020 Sep.
Article in English | MEDLINE | ID: mdl-32796487

ABSTRACT

INTRODUTION:: [Ga]Ga-prostate specific membrane antigen (PSMA)-11 showed a clear gain in sensitivity for lesion detection in the biological recurrence of prostate cancer as compared to the standard [F]fluorocholine radiopharmaceutical. To meet the strong demand for [Ga]Ga-PSMA-11, we aimed to optimize an automated radiolabeling process by evaluating the influence of different key parameters on radiochemical purity and radiochemical yield. METHODS: The radiosynthesis of [Ga]Ga PSMA-11 was performed using a Trasis MiniAio synthesizer and a Ge/Ga GalliaPharm generator supplied by Eckert & Ziegler, Berlin, Germany. Optimized labeling parameters were evaluated by variation of sodium acetate concentrations and temperature of radiolabeling as well as the purification process. RESULTS: For each condition tested, radiochemical purity was higher than 99% in the final vial without batch failure, indicating a robust and fast radiosynthesis process. Radiosynthesis without the solid phase extraction purification process at room temperature in less than 5 min resulted in a radiolabeling efficiency of over 99% and remained stable at least 4 h without manual processing to limit operator radiation exposure. CONCLUSION: The procedure was completely automated and provided a high radiochemical yield. It can be performed several times a day, facilitating the clinical demand of this radiopharmaceutical.


Subject(s)
Edetic Acid/analogs & derivatives , Hot Temperature , Oligopeptides/chemistry , Oligopeptides/chemical synthesis , Radiochemistry/methods , Edetic Acid/chemical synthesis , Edetic Acid/chemistry , Edetic Acid/isolation & purification , Gallium Isotopes , Gallium Radioisotopes , Isotope Labeling , Oligopeptides/isolation & purification , Radiochemistry/instrumentation , Sodium Acetate/chemistry
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