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首页> 外文期刊>The quarterly journal of nuclear medicine and molecular imaging >Production and separation of 'non-standard' PET nuclides at a large cyclotron facility: the experiences at the Paul Scherrer Institute in Switzerland
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Production and separation of 'non-standard' PET nuclides at a large cyclotron facility: the experiences at the Paul Scherrer Institute in Switzerland

机译:在大型回旋加速器设备中生产和分离“非标准” PET核素:瑞士Paul Scherrer研究所的经验

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摘要

Radioimmuno-positron emission tomography (PET) combined with radioimmunotherapy is attractive to assess tumor targeting and quantitate the radiation dose to tumor and normal tissues. For this purpose, PET radionuclides with adequate physical half-lives matching those of the targeting molecule (e.g. antibodies) are preferable. Copper-64 (T_(1/2)=12.7 h, E_(β)+max=653 keV) and Zirconium-89 (T_(1/2)=78.4 d, E_β+ max =901 keV) are attractive isotopes for this purpose. The 72 MeV cyclotron at the Paul Scherrer Institute provides the infrastructure for the production of a wide variety of radionuclides for diagnostic and therapeutic purposes. ~(64)Cu and ~(89)Zr are currently evaluated at the Center for Radiopharmaceutical Science (CRS) of the Paul Scherrer Institute (PSI) in combination with the L1 cam targeting antibody chCE7 and various protein formats thereof. A second focus of the CRS is the radiolabeling of small, tumor targeting molecules with technetium. The PET isotope ~(94m)Tc offers potential alternative to its widely used ~(99m)Tc SPECT counterpart. In this report, the development, optimization and pitfalls of ~(64)Cu, ~(89)Zr and 94mTc production/separation are reported and discussed.
机译:放射免疫-正电子发射断层扫描(PET)与放射免疫疗法的结合对评估肿瘤的靶向性和量化对肿瘤和正常组织的放射剂量具有吸引力。为此,优选具有与靶分子(例如抗体)相匹配的足够的物理半衰期的PET放射性核素。铜64(T_(1/2)= 12.7 h,E_(β)+ max = 653 keV)和锆89(T_(1/2)= 78.4 d,E_β+ max = 901 keV)是有吸引力的同位素这个目的。 Paul Scherrer研究所的72 MeV回旋加速器为生产用于诊断和治疗目的的各种放射性核素提供了基础设施。目前在Paul Scherrer研究所(PSI)的放射药物科学中心(CRS)与L1 cam靶向抗体chCE7及其各种蛋白质形式联合评估〜(64)Cu和〜(89)Zr。 CRS的第二个重点是用tech对小的肿瘤靶向分子进行放射性标记。 PET同位素〜(94m)Tc为其广泛使用的〜(99m)Tc SPECT对应物提供了潜在的替代方法。在本报告中,报告并讨论了〜(64)Cu,〜(89)Zr和94mTc产生/分离的发展,优化和陷阱。

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