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靶向α粒子治疗:成像、剂量测定与辐射防护。

Targeted alpha-particle therapy: imaging, dosimetry, and radiation protection.

作者信息

Lassmann M, Eberlein U

机构信息

Department of Nuclear Medicine, University of Würzburg, Oberdürrbacher Str. 6, D-97080 Würzburg, Germany.

出版信息

Ann ICRP. 2018 Oct;47(3-4):187-195. doi: 10.1177/0146645318756253. Epub 2018 Apr 17.

Abstract

Systemic or locoregionally administered alpha-particle emitters are highly potent therapeutic agents used in oncology that are fundamentally novel in their mechanism and, most likely, overcome radiation resistance as the alpha particles emitted have a short range and a high linear energy transfer. The use of alpha emitters in a clinic environment requires extra measures with respect to imaging, dosimetry, and radiation protection. This is shown for the example of Ra dichloride therapy. After intravenous injection, Ra leaves the blood and is taken up rapidly in bone and bone metastases; it is mainly excreted via the intestinal tract. Ra can be imaged in patients with a gamma camera. Dosimetry shows that, after a series of six treatments for a 70-kg person with an overall administered activity of 23 MBq, Ra results in an absorbed alpha dose of approximately 17 Gy to the bone endosteum and approximately 1.7 Gy to the red bone marrow. During administration, special care must be taken to ensure that no spill is present on the skin of either the patient or staff. Due to the low dose rate, the treatment is normally performed on an outpatient basis; the patient and carers should receive written instructions about the therapy and radiation protection.

摘要

全身或局部给药的α粒子发射体是肿瘤学中使用的高效治疗剂,其作用机制具有根本性的新颖性,并且很可能克服辐射抗性,因为发射的α粒子射程短且线能量转移高。在临床环境中使用α发射体需要在成像、剂量测定和辐射防护方面采取额外措施。以二氯化镭治疗为例进行说明。静脉注射后,镭离开血液并迅速被骨骼和骨转移灶摄取;它主要通过肠道排泄。可以用γ相机对患者体内的镭进行成像。剂量测定表明,对于一名体重70公斤、总给药活度为23 MBq的患者进行一系列六次治疗后,镭对骨内膜的吸收α剂量约为17 Gy,对红骨髓的吸收α剂量约为1.7 Gy。给药期间,必须格外小心,确保患者或工作人员的皮肤上没有溢出物。由于剂量率低,治疗通常在门诊进行;患者和护理人员应收到关于治疗和辐射防护的书面说明。

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