An Experimental Generator for Production of High-Purity <sup>212</sup>Pb for Use in Radiopharmaceuticals.

Li, Ruth Gong; Stenberg, Vilde Yuli; Larsen, Roy Hartvig · J Nucl Med · 2023

basic_science · Level V

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Abstract

The feasibility, performance, and radiation safety of an experimental generator were evaluated to efficiently produce <sup>212</sup>Pb intended for radiopharmaceuticals. <b>Methods:</b> The generator consisted of a flask with a removable cap containing a source of <sup>224</sup>Ra or <sup>228</sup>Th absorbed on quartz wool. Gaseous <sup>220</sup>Rn emanated from the decaying source, which subsequently decayed to <sup>212</sup>Pb, which was adsorbed on the flask's interior surface. The <sup>212</sup>Pb was collected by washing the flask with 0.5-1 mL of 0.1 M HCl. <b>Results:</b> The generator collector flask trapped 62%-68% of the <sup>212</sup>Pb, of which more than 87% (tested up to 26 MBq) could be harvested. The obtained <sup>212</sup>Pb solution had a high purity (>99.98%) and could be used for the preparation of radioconjugates with more than 97% radiochemical purity. Future designs of the generator should aim to further reduce the risk of radon and γ-energy exposure to operators. <b>Conclusion:</b> The presented technology is a promising method for easy and convenient <sup>212</sup>Pb production.

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