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An Optimised Radiolabel Procedure to Prepare ~(99m)Tc-Colloidal Rhenium Sulphide to Improve Radiochemical Purity

机译:制备〜(99m)Tc-胶体硫化S以提高放射化学纯度的优化放射标记程序

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摘要

Background: More than 25% of ~(99m)Tc colloidal rhenium sulphide preparations have been reported to have a radiochemical purity of <95% in 11 radiopharmacies.Objectives: To identify the key parameters involved in radiochemical purity, different preparation procedures were analysed to develop an optimised preparation method.Methods: In the first part of this study, various data such as the Nanocis kit batch number, the eluate volume, the time between the two final elutions, the temperature and duration of heating were collected and analysed to determine the critical parameters that significantly decrease radiochemical purity. In the second part, a new procedure was applied and then the same parameters and radiochemical purity values were collected and compared with the results before the new procedure.Results: Among 184 preparations, 137 (75%) had a radiochemical purity exceeding 95%, 25 (13.6%) were between 90 and 95% pure and 22 (12%) were below 90%. Significantly higher radiochemical purity was observed after the implementation of the new preparation procedure (89.5% of 374 preparations had radiochemical purities of >95%). This new procedure consists in lowering the ~(99m)Tc eluate volume and time of heating.Conclusions: The implementation of a new method for the preparation of ~(99m)Tc colloidal rhenium sulphide based on a comparison of practices in various radiopharmacies resulted in: i) a determination of the critical points of this preparation, ii) an optimised labelling technique to harmonise different practices, and iii) a significant improvement in the preparations radiochemical purity and the quality of the lymphoscintigraphy in the location of sentinel node.
机译:背景:据报道,在11家放射药房中,〜(99m)Tc胶体硫化rh制剂中有超过25%的放射化学纯度低于95%。目的:为确定涉及放射化学纯度的关键参数,分析了不同的制备程序方法:在本研究的第一部分中,收集并分析了诸如Nanocis试剂盒批号,洗脱液体积,两次最终洗脱之间的时间,加热温度和持续时间等各种数据显着降低放射化学纯度的关键参数。在第二部分中,应用了新程序,然后收集了相同的参数和放射化学纯度值,并将其与新程序之前的结果进行了比较。结果:在184种制剂中,有137种(75%)的放射化学纯度超过95%, 25(13.6%)的纯度介于90%和95%之间,而22(12%)的纯度低于90%。实施新的制备程序后,观察到明显更高的放​​射化学纯度(374种制剂中的89.5%的放射化学纯度> 95%)。该新方法在于降低〜(99m)Tc洗脱液的体积和加热时间。结论:根据各种放射药店的实践比较,实施了一种制备〜(99m)Tc胶体硫化rh的新方法,结果导致: :i)确定该制剂的关键点,ii)一种优化的标记技术以协调不同的操作,并且iii)显着改善制剂的放射化学纯度和前哨淋巴结位置的淋巴显像质量。

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