首页> 外文期刊>The Journal of Nuclear Medicine >Radioisotopic Purity of Sodium Pertechnetate Tc-99m Produced with a Medium-Energy Cyclotron: Implications for Internal Radiation Dose, Image Quality, and Release Specifications
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Radioisotopic Purity of Sodium Pertechnetate Tc-99m Produced with a Medium-Energy Cyclotron: Implications for Internal Radiation Dose, Image Quality, and Release Specifications

机译:高能回旋加速器产生的高tech酸钠Tc-99m的放射性同位素纯度:对内部辐射剂量,图像质量和释放规格的影响

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摘要

Cyclotron production of Tc-99m is a promising route to supply Tc-99m radiopharmaceuticals. Higher Tc-99m yields can be obtained with medium-energy cyclotrons in comparison to those dedicated to PET isotope production. To take advantage of this capability, evaluation of the radioisotopic purity of Tc-99m produced at medium energy (20-24 MeV) and its impact on image quality and dosimetry was required. Methods: Thick Mo-100 (99.03% and 99.815%) targets were irradiated with incident energies of 20, 22, and 24 MeV for 2 or 6 h. The targets were processed to recover an effective thickness corresponding to approximately 5-MeV energy loss, and the resulting sodium pertechnetate Tc-99m was assayed for chemical, radiochemical, and radionuclidic purity. Radioisotopic content in final formulation was quantified using gamma-ray spectrometry. The internal radiation dose for Tc-99m-pertechnetate was calculated on the basis of experimentally measured values and biokinetic data in humans. Planar and SPECT imaging were performed using thin capillary and water-filled Jaszczak phantoms. Results: Extracted sodium pertechnetate Tc-99m met all provisional quality standards. The formulated solution for injection had a pH of 5.0-5.5, contained greater than 98% of radioactivity in the form of pertechnetate ion, and was stable for at least 24 h after formulation. Radioisotopic purity of Tc-99m produced with 99.03% enriched Mo-100 was greater than 99.0% decay corrected to the end of bombardment (EOB). The radioisotopic purity of Tc-99m produced with 99.815% enriched Mo-100 was 99.98% or greater (decay corrected to the EOB). The estimated dose increase relative to Tc-99m without any radionuclidic impurities was below 10% for sodium pertechnetate Tc-99m produced from 99.03% Mo-100 if injected up to 6 h after the EOB. For 99.815% Mo-100, the increase in effective dose was less than 2% at 6 h after the EOB and less than 4% at 15 h after the EOB when the target was irradiated at an incident energy of 24 MeV. Image spatial resolution and contrast with cyclotron-produced Tc-99m were equivalent to those obtained with Tc-99m eluted from a conventional generator. Conclusion: Clinical-grade sodium pertechnetate Tc-99m was produced with a cyclotron at medium energies. Quality control procedures and release specifications were drafted as part of a clinical trial application that received approval from Health Canada. The results of this work are intended to contribute to establishing a regulatory framework for using cyclotron-produced Tc-99m in routine clinical practice.
机译:回旋加速器生产Tc-99m是供应Tc-99m放射性药物的有前途的途径。与专用于PET同位素生产的回旋加速器相比,使用中能回旋加速器可获得更高的Tc-99m产量。为了利用此功能,需要评估在中等能量(20-24 MeV)下产生的Tc-99m的放射性同位素纯度及其对图像质量和剂量的影响。方法:用20、22和24 MeV的入射能量辐照厚Mo-100(分别为99.03%和99.815%)的靶2或6 h。处理靶标以恢复对应于大约5 MeV能量损失的有效厚度,然后测定所得高net酸钠Tc-99m的化学,放射化学和放射性核素纯度。最终制剂中的放射性同位素含量使用伽马射线光谱法定量。 Tc-99m-高tech酸酯的内部辐射剂量是根据人体的实验测量值和生物动力学数据计算得出的。使用薄毛细管和充满水的Jaszczak体模进行平面和SPECT成像。结果:提取的高tech酸钠Tc-99m符合所有临时质量标准。配制的注射溶液的pH值为5.0-5.5,以高tech酸根离子的形式包含大于98%的放射性,并且在配制后至少24小时稳定。富集了99.03%Mo-100的Tc-99m的放射性同位素纯度大于99.0%的衰减,校正到轰击结束(EOB)。用富集了99.815%Mo-100的Tc-99m的放射性同位素纯度为99.98%或更高(以EOB校正)。如果在EOB后最多注射6 h,由99.03%Mo-100产生的高tech酸钠Tc-99m相对于Tc-99m的估计剂量相对于Tc-99m的增加低于10%。对于99.815%Mo-100,当以24 MeV的入射能量照射靶标时,有效剂量的增加在EOB后6 h小于2%,在EOB后15 h小于4%。回旋加速器生产的Tc-99m的图像空间分辨率和对比度与从常规发生器洗脱的Tc-99m所获得的图像分辨率和对比度相同。结论:用中能回旋加速器生产了临床级高tech酸钠Tc-99m。质量控制程序和发布规范是作为临床试验申请的一部分起草的,该申请已获得加拿大卫生部的批准。这项工作的结果旨在为建立在常规临床实践中使用回旋加速器生产的Tc-99m的监管框架做出贡献。

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