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潜在的放射免疫治疗α发射体钍 - 第一部分:通过初级液体闪烁技术和衰变子体生长测量进行标准化。

The potential radio-immunotherapeutic α-emitter Th - part I: Standardisation via primary liquid scintillation techniques and decay progeny ingrowth measurements.

作者信息

Collins S M, Keightley J D, Ivanov P, Arinc A, Jerome S M, Fenwick A J, Pearce A K

机构信息

National Physical Laboratory, Hampton Road, Teddington, Middlesex TW11 0LW, United Kingdom.

National Physical Laboratory, Hampton Road, Teddington, Middlesex TW11 0LW, United Kingdom.

出版信息

Appl Radiat Isot. 2019 Mar;145:240-250. doi: 10.1016/j.apradiso.2018.12.012. Epub 2018 Dec 13.

Abstract

Thorium-227 is a potential therapeutic radionuclide for applications in targeted α-radioimmunotherapy for the treatment of various types of cancer. To provide nuclear medicine departments involved in Phase I clinical trials traceability to the SI unit of radioactivity (Bq), a standardisation of a radiochemically pure Th aqueous solution has been performed at the National Physical Laboratory. This was achieved via two primary liquid scintillation (LS) techniques -4π(LS)-γ digital coincidence counting (DCC) and 4π LS counting. These absolute techniques were supported by the indirect determination of the Th activity via the measurement of the ingrowth and decay rate of the decay progeny by both ionisations chambers and high purity germanium (HPGe) gamma-ray spectrometry. The results of the primary techniques were found to be consistent, both with each other (zeta score = 1.1) and to the decay progeny ingrowth measurements. An activity per unit mass of 20.726 (51) kBq g was determined for the solution. A procedure has been developed that provided an effective separation of the Th from its decay progeny, which was shown by the effective time zero of the Th-Ra nuclear chronometer measured by HPGe gamma-ray spectrometry.

摘要

钍-227是一种潜在的治疗性放射性核素,可用于靶向α放射免疫疗法治疗各种类型的癌症。为了使参与一期临床试验的核医学科室能够追溯到放射性活度的国际单位制(Bq),国家物理实验室对放射化学纯的钍水溶液进行了标准化。这是通过两种主要的液体闪烁(LS)技术实现的——4π(LS)-γ数字符合计数(DCC)和4π LS计数。这些绝对技术通过电离室和高纯锗(HPGe)γ射线能谱法测量衰变子体的生长和衰变率来间接测定钍的活度得到支持。发现主要技术的结果相互一致(zeta分数=1.1),并且与衰变子体生长测量结果一致。确定该溶液的单位质量活度为20.726(51)kBq/g。已经开发出一种程序,该程序能够有效地将钍与其衰变子体分离,这通过HPGeγ射线能谱法测量的钍-镭核计时仪的有效时间零点得到证明。

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