Background <p>Stable <sup>208</sup>Pb will accumulate over time in all <sup>212</sup>Pb generators, forming an increasing proportion of the Pb atoms and potentially impacting the efficiency of chelation of <sup>212</sup>Pb. This paper models the accumulation of <sup>208</sup>Pb in <sup>212</sup>Pb-parent generators with time, calculates the optimal elution time with respect to effective specific activity&#xa0;(ESA) of the <sup>212</sup>Pb produced, and considers whether the presence of <sup>208</sup>Pb could prevent the required molar activities (A<sub>m</sub>) being achieved. A matrix calculation was utilised to model the decay of <sup>224</sup>Ra and <sup>228</sup>Th parents in generators and the associated accumulation of <sup>208</sup>Pb with time. This model was used to calculate the optimal elution times for each generator with respect to ESA and A<sub>m</sub>.</p> Results <p>The optimal elution time with respect to A<sub>m</sub> of <sup>212</sup>Pb is 16.5&#xa0;h for a <sup>224</sup>Ra generator (61.0% of <sup>224</sup>Ra starting activity, A<sub>m</sub> = 6997&#xa0;MBq <sup>212</sup>Pb/nmol total Pb) and 19.2&#xa0;h for a <sup>228</sup>Th generator (71.4% of <sup>228</sup>Th starting activity, A<sub>m</sub> = 6566&#xa0;MBq <sup>212</sup>Pb/nmol total Pb).</p> Conclusions <p>The limited data available in literature shows the level of <sup>208</sup>Pb present in these studies does not prevent attainment of the required molar activities for pre-clinical or clinical work. However, with other chelators and under other conditions this may not be the case. The authors would encourage others to measure and report the level of <sup>208</sup>Pb in <sup>212</sup>Pb generator eluates alongside radiolabelling results and the max A<sub>m</sub> of the radiopharmaceutical <sup>212</sup>Pb (vector molecule (VM)) achieved.</p>

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Minimising the impact of stable 208Pb on recovery of 212Pb from a generator

  • Rachel Roberts,
  • Tim Carthy,
  • Jennifer Young,
  • Temi Awogboro,
  • Howard Greenwood,
  • Jane Sosabowski,
  • Scott Heath,
  • Francis Livens

摘要

Background

Stable 208Pb will accumulate over time in all 212Pb generators, forming an increasing proportion of the Pb atoms and potentially impacting the efficiency of chelation of 212Pb. This paper models the accumulation of 208Pb in 212Pb-parent generators with time, calculates the optimal elution time with respect to effective specific activity (ESA) of the 212Pb produced, and considers whether the presence of 208Pb could prevent the required molar activities (Am) being achieved. A matrix calculation was utilised to model the decay of 224Ra and 228Th parents in generators and the associated accumulation of 208Pb with time. This model was used to calculate the optimal elution times for each generator with respect to ESA and Am.

Results

The optimal elution time with respect to Am of 212Pb is 16.5 h for a 224Ra generator (61.0% of 224Ra starting activity, Am = 6997 MBq 212Pb/nmol total Pb) and 19.2 h for a 228Th generator (71.4% of 228Th starting activity, Am = 6566 MBq 212Pb/nmol total Pb).

Conclusions

The limited data available in literature shows the level of 208Pb present in these studies does not prevent attainment of the required molar activities for pre-clinical or clinical work. However, with other chelators and under other conditions this may not be the case. The authors would encourage others to measure and report the level of 208Pb in 212Pb generator eluates alongside radiolabelling results and the max Am of the radiopharmaceutical 212Pb (vector molecule (VM)) achieved.