Ramamoorthy N, Saraswathy P, Das M K, Mehra K S, Ananthakrishnan M
Board of Radiation and Isotope Technology (BRIT), BARC Vashi Complex, Navi Mumbai, India.
Nucl Med Commun. 2002 Jan;23(1):83-9. doi: 10.1097/00006231-200201000-00013.
153Sm, an attractive therapeutic radionuclide, was produced by neutron activation of both natural Sm2O3 and 98% enriched 152Sm2O3 targets. The production logistics and radionuclidic purity aspects of 153Sm obtained using both these targets are discussed with respect to the intended end use for metastatic bone pain palliation (MBPP) in terminal cancer patients and radiation synovectomy (RS) of medium size joints. The specific activity of 153Sm obtained was around 11 GBq x mg(-1) (approximately 300 mCi x mg(-1)) and 44 GBq x mg(-1) (approx. 1200 mCi x mg(-1)) from natural and enriched targets, respectively. The level of the long-lived radionuclidic impurity burden in 153Sm obtained from the natural Sm2O3 targets, namely, due to 154Eu (5 Bq x MBq(-1) 153Sm (5 nCi x mCi(-1) 153Sm)) and 155Eu (75 Bq x MBq(-1) 153Sm (75 nCi x mCi(-1) 153Sm)), appears low enough not to pose a problem, both in the palliative treatment of terminal cancer patients (at 1.85-2.22 GBq (50-60 mCi) dose) as well as in RS (at 74 MBq (2 mCi) dose). The 154Eu content in 153Sm from the enriched target was comparable, while, as expected, the level of 155Eu was nearly two orders of magnitude lower. There is a notable overall advantage of 153Sm over the use of 186Re, the other radionuclide of interest for the same purposes.
153Sm是一种有吸引力的治疗性放射性核素,通过对天然Sm2O3靶和98%富集的152Sm2O3靶进行中子活化产生。针对终末期癌症患者转移性骨痛缓解(MBPP)和中等大小关节放射性滑膜切除(RS)的预期最终用途,讨论了使用这两种靶材获得的153Sm的生产物流和放射性核素纯度方面。从天然靶和富集靶获得的153Sm的比活度分别约为11 GBq×mg(-1)(约300 mCi×mg(-1))和44 GBq×mg(-1)(约1200 mCi×mg(-1))。从天然Sm2O3靶获得的153Sm中长寿命放射性核素杂质负载水平,即由于154Eu(5 Bq×MBq(-1) 153Sm(5 nCi×mCi(-1) 153Sm))和155Eu(75 Bq×MBq(-1) 153Sm(75 nCi×mCi(-1) 153Sm)),似乎足够低,在终末期癌症患者的姑息治疗(剂量为1.85 - 2.22 GBq(50 - 60 mCi))以及RS(剂量为74 MBq(2 mCi))中都不会构成问题。富集靶的153Sm中的154Eu含量相当,而正如预期的那样,155Eu的水平低了近两个数量级。与出于相同目的使用的另一种放射性核素186Re相比,153Sm具有显著的总体优势。