Notni Johannes, Wester Hans-Jürgen
Pharmaceutical Radiochemistry, Technische Universität München, Garching, Germany.
J Labelled Comp Radiopharm. 2018 Mar;61(3):141-153. doi: 10.1002/jlcr.3582. Epub 2017 Dec 29.
The potential and future role of certain metal radionuclides, for example, Sc, Zr, Y, Cu, Ga, Lu, Ac, and Bi, and several terbium isotopes has been controversially discussed in the past decades. Furthermore, the possible benefits of "matched pairs" of isotopes for tandem applications of diagnostics and therapeutics (theranostics) have been emphasized, while such approaches still have not made their way into routine clinical practice. Analysis of bibliographical data illustrates how popularity of certain nuclides has been promoted by cycles of availability and applications. We furthermore discuss the different practical requirements for diagnostic and therapeutic radiopharmaceuticals and the resulting consequences for efficient development of clinically useful pairs of radionuclide theranostics, with particular emphasis on the underlying economical factors. Based on an exemplary assessment of overall production costs for Ga and F radiopharmaceuticals, we venture a look into the future of theranostics and predict that high-throughput PET applications, that is, diagnosis of frequent conditions, will ultimately rely on F tracers. PET radiometals will occupy a niche in the clinical low-throughput sector (diagnosis of rare diseases), but above all, dominate preclinical research and clinical translation. Matched isotope pairs will be of lesser relevance for theranostics but may become important for future PET-based therapeutic dosimetry.
在过去几十年里,某些金属放射性核素,例如钪、锆、钇、铜、镓、镥、锕和铋,以及几种铽同位素的潜在和未来作用一直存在争议。此外,人们强调了同位素“匹配对”在诊断和治疗串联应用(诊疗一体化)中的潜在益处,然而这种方法尚未进入常规临床实践。对文献数据的分析表明,某些核素的受欢迎程度是如何受到供应和应用周期的推动。我们还讨论了诊断和治疗用放射性药物的不同实际要求,以及对高效开发临床上有用的放射性核素诊疗一体化对的影响,特别强调了潜在的经济因素。基于对镓和氟放射性药物总体生产成本的示例性评估,我们展望了诊疗一体化的未来,并预测高通量正电子发射断层扫描(PET)应用,即常见病症的诊断,最终将依赖于氟示踪剂。PET放射性金属将在临床低通量领域(罕见疾病的诊断)占据一席之地,但最重要的是,将主导临床前研究和临床转化。匹配的同位素对在诊疗一体化中的相关性较小,但可能对未来基于PET的治疗剂量测定变得重要。