Cyclotron production of <sup>225</sup>Ac from an electroplated <sup>226</sup>Ra target.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 34196752.
- Also identified by DOI 10.1007/s00259-021-05460-7 and PMC identifier 8712309.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
We demonstrate cyclotron production of high-quality <sup>225</sup>Ac using an electroplated <sup>226</sup>Ra target. <sup>226</sup>Ra was extracted from legacy Ra sources using a chelating resin. Subsequent ion-exchange purification gave pure <sup>226</sup>Ra with a certain amount of carrier Ba. The radium target was prepared by electroplating. We successfully deposited about 37 MBq of <sup>226</sup>Ra on a target box. Maximum activation was achieved using 15.6 MeV protons on the target at 20 µA for 5 h. Two functional resins with various concentrations of nitric acid purified <sup>225</sup>Ac and recovered <sup>226</sup>Ra. Cooling the intermediate <sup>225</sup>Ac for 2-3 weeks decayed the major byproduct of <sup>226</sup>Ac and increased the radionuclidic purity of <sup>225</sup>Ac. Repeating the same separation protocol provided high-quality <sup>225</sup>Ac. We obtained <sup>225</sup>Ac at a yield of about 2.4 MBq at the end of bombardment (EOB), and the subsequent initial purification gave 1.7 MBq of <sup>225</sup>Ac with <sup>226</sup>Ac/<sup>225</sup>Ac ratio of < 3% at 4 days from EOB. Additional cooling time coupled with the separation procedure (secondary purification) effectively increased the <sup>225</sup>Ac (4n + 1 series) radionuclidic purity up to 99 + %. The recovered <sup>225</sup>Ac had a similar identification to commercially available <sup>225</sup>Ac originating from a <sup>229</sup>Th/<sup>225</sup>Ac generator. This procedure, which involves the <sup>226</sup>Ra(p,2n)<sup>225</sup>Ac reaction and the appropriate purification, has the potential to be a major alternative pathway for <sup>225</sup>Ac production because it can be performed in any facility with a compact cyclotron to address the increasing demand for <sup>225</sup>Ac.
Medical subject headings
- Cyclotrons
- Radium