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用于骨髓消融的亲骨性放射性核素的剂量学考量

Dosimetry considerations of bone-seeking radionuclides for marrow ablation.

作者信息

Bayouth J E, Macey D J

机构信息

Department of Radiation Physics, University of Texas M.D. Anderson Cancer Center, Houston 77030.

出版信息

Med Phys. 1993 Jul-Aug;20(4):1089-96. doi: 10.1118/1.597005.

Abstract

Marrow ablation by radionuclide therapy for patients requiring bone marrow transplantation is possible by injecting bone-seeking radiopharmaceuticals. For each radionuclide under consideration, one should determine the (1) amount of activity required to deliver a given radiation dose to marrow, (2) waiting period before reinfusion to limit the radiation dose to the transplant marrow to an acceptable level, and (3) dose to other critical organs. In an attempt to answer these questions, dose estimates for several radionuclides of interest (32P, 90Y, 153Sm, 166Ho, 186Re, and 188Re) have been calculated. All doses are derived following the MIRD methodology. Biodistribution data of 153Sm-labeled phosphates in the rat are used to estimate uptake of similar radiopharmaceuticals in humans. Typically the skeleton retains 50% of the injected activity and 50% is excreted rapidly through the urine, permitting delivery of ablation doses to the marrow, with tolerable doses to other organs. Skeletal retention data measured from a diagnostic dose can be used to calculate the activity required to deliver a desired marrow ablation dose consistent with toxicity limits set by other critical organs.

摘要

对于需要进行骨髓移植的患者,通过注射亲骨性放射性药物,利用放射性核素疗法进行骨髓消融是可行的。对于每种考虑中的放射性核素,应确定:(1)向骨髓输送给定辐射剂量所需的活度;(2)再输注前的等待期,以将移植骨髓所受辐射剂量限制在可接受水平;(3)对其他关键器官的剂量。为了回答这些问题,已计算了几种感兴趣的放射性核素(32P、90Y、153Sm、166Ho、186Re和188Re)的剂量估计值。所有剂量均按照MIRD方法得出。利用153Sm标记的磷酸盐在大鼠体内的生物分布数据来估计类似放射性药物在人体内的摄取情况。通常,骨骼会保留注入活度的50%,另外50%会通过尿液迅速排出,这样就可以向骨髓输送消融剂量,同时对其他器官的剂量也在可耐受范围内。从诊断剂量测得的骨骼滞留数据可用于计算输送所需骨髓消融剂量所需的活度,该剂量要符合其他关键器官设定的毒性限值。

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