镱-176同位素分离技术研究进展及应用

Ytterbium-176 Isotope Separation Technology Status and Application

  • 摘要: 177Lu因其半衰期相对较长、易于标记抗体和多肽等药物分子、发射的β射线能量低射程短等优点,被公认为是目前最具前景的靶向放射性诊疗一体化核素之一。当前,采用反应堆通过间接法生产177Lu具有产品比活度高、无长半衰期177mLu杂质等优势,是制备177Lu的首选方法。无载体177Lu的制备依赖高丰度的176Yb同位素前体。本研究综述了电磁分离法、激光法和化学法等176Yb同位素分离技术的制备原理、研究现状、未来市场需求和应用前景。研究表明,我国在电磁分离法和激光法方面已取得一定进展,但要实现高丰度176Yb的稳定供应,仍需进一步研究与技术创新,以构建自主可控的医用同位素供应体系,以保障核医药产业的健康发展。

     

    Abstract: 177Lu is recognized as one of the most promising therapeutic radionuclides for targeted radiotherapy due to its relatively long half-life, ease of labeling antibodies and peptide drug molecules, and the low energy and short range of its β-ray emissions. Currently, the indirect method of reactor production of 177Lu is preferred because it yields a product with high specific activity and no long-lived 177mLu impurities. The production of no-carrier 177Lu relies on high-abundance 176Yb isotopic precursors. This paper reviews several 176Yb isotope separation techniques, including electromagnetic separation, laser methods, and chemical methods, focusing on their preparation principles, current research status, future market demands, and application prospects. China has made certain progress in electromagnetic and laser separation methods. However, to achieve a stable supply of high-abundance 176Yb, further research and technological innovation are still needed to build an independent and controllable supply system for medical isotopes and ensure the healthy development of the nuclear medicine industry.

     

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