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Influence of the Generator in-Growth Time on the Final Radiochemical Purity and Stability of Radiopharmaceuticals

机译:发生器的生长期对最终放射性药物纯度和放射性药物稳定性的影响

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At Legnaro laboratories of the Italian National Institute for Nuclear Physics (INFN), a feasibility study has started since 2011 related to accelerated-based direct production of by the 100Mo(p,2n) reaction. Both theoretical investigations and some recent preliminary irradiation tests on 100Mo-enriched samples have pointed out that both the / ratio and the specific activity will be basically different in the final accelerator-produced Tc with respect to generator-produced one, which might affect the radiopharmaceutical procedures. The aim of this work was to evaluate the possible impact of different / isomeric ratios on the preparation of different Tc-labeled pharmaceutical kits. A set of measurements with , eluted from a standard 99Mo/ generator, was performed, and results on both radiochemical purity and stability studies (following the standard quality control procedures) are reported for a set of widely used pharmaceuticals (i.e., -Sestamibi, -ECD, -MAG3, -DTPA, -MDP, -HMDP, -nanocolloids, and -DMSA). These pharmaceuticals have been all reconstituted with either the first [O4]− eluate obtained from a 99Mo/ generator (coming from two different companies) or eluates after 24, 36, 48, and 72 hours from last elution. Results show that the radiochemical purity and stability of these radiopharmaceuticals were not affected up to the value of 11.84 for the / ratio.
机译:在意大利国家核物理研究所(INFN)的莱格纳罗实验室,自2011年以来就开始进行可行性研究,该研究涉及100Mo(p,2n)反应基于加速的直接生产。理论研究和最近对100Mo富集样品进行的一些初步辐照试验均指出,最终促进剂生产的Tc相对于发生器生产的Tc的/比和比活都将基本不同,这可能会影响放射性药物。程序。这项工作的目的是评估不同/同分异构体比率对不同Tc标记药物试剂盒的制备可能产生的影响。从标准的99Mo /发生器洗脱下来的样品进行了一系列测量,并报告了一组广泛使用的药物(例如-Sestamibi,- ECD,-MAG3,-DTPA,-MDP,-HMDP,-纳米胶体和-DMSA)。这些药物全部用从99Mo /发生器(来自两个不同公司的产品)获得的第一种[O4-]-洗脱液或在上次洗脱24、36、48和72小时后的洗脱液重新配制。结果表明,这些放射性药物的放射化学纯度和稳定性在/比率高达11.84的值时没有受到影响。

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