{"title":"Radiation protection aspects for alpha therapies.","authors":"Allison J Craig,&nbsp;Jan Taprogge,&nbsp;Glenn D Flux,&nbsp;Iain Murray","doi":"10.23736/S1824-4785.22.03501-4","DOIUrl":null,"url":null,"abstract":"<p><p>The use of alpha emitting radiotherapeutics is increasing, with further growth expected due to a number of clinical trials currently running involving new alpha emitters. However, literature concerning radiation safety aspects of alpha emitting radionuclides is limited and most of the available literature concerns <sup>223</sup>Ra. In general, the occupational exposure from alpha emitting radionuclides is expected to be low, as are doses to the public from external exposure. However, care must be taken to avoid skin contamination, inhalation, and ingestion. Not all alpha emitting radionuclides are identical, they often have very different associated decay chains and emissions. The decay chains and the manufacturing process should be carefully examined to identify any long-lived progeny or impurities. These may have an impact on the radiation safety processes required to limit occupational exposure and for waste management. Doses to the public must also be assessed, either arising directly from exposure to patients treated with radiotherapeutics, or via waste streams. Risk assessments should be in place when starting a new service covering all aspects of the preparation and administration, as well as any foreseeable incidents such as skin contamination or patient death, and the appropriate steps to take in these instances. It is imperative that with the increase in the use of alpha emitting radiotherapeutics more literature is published on radiation safety aspects, especially for new alpha emitting radiotherapeutics which often have very different characteristics than the currently established ones.</p>","PeriodicalId":23069,"journal":{"name":"The quarterly journal of nuclear medicine and molecular imaging : official publication of the Italian Association of Nuclear Medicine (AIMN) [and] the International Association of Radiopharmacology (IAR), [and] Section of the Society of...","volume":"67 1","pages":"4-13"},"PeriodicalIF":0.0000,"publicationDate":"2023-03-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"The quarterly journal of nuclear medicine and molecular imaging : official publication of the Italian Association of Nuclear Medicine (AIMN) [and] the International Association of Radiopharmacology (IAR), [and] Section of the Society of...","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.23736/S1824-4785.22.03501-4","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

The use of alpha emitting radiotherapeutics is increasing, with further growth expected due to a number of clinical trials currently running involving new alpha emitters. However, literature concerning radiation safety aspects of alpha emitting radionuclides is limited and most of the available literature concerns 223Ra. In general, the occupational exposure from alpha emitting radionuclides is expected to be low, as are doses to the public from external exposure. However, care must be taken to avoid skin contamination, inhalation, and ingestion. Not all alpha emitting radionuclides are identical, they often have very different associated decay chains and emissions. The decay chains and the manufacturing process should be carefully examined to identify any long-lived progeny or impurities. These may have an impact on the radiation safety processes required to limit occupational exposure and for waste management. Doses to the public must also be assessed, either arising directly from exposure to patients treated with radiotherapeutics, or via waste streams. Risk assessments should be in place when starting a new service covering all aspects of the preparation and administration, as well as any foreseeable incidents such as skin contamination or patient death, and the appropriate steps to take in these instances. It is imperative that with the increase in the use of alpha emitting radiotherapeutics more literature is published on radiation safety aspects, especially for new alpha emitting radiotherapeutics which often have very different characteristics than the currently established ones.

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α疗法的辐射防护方面。
放射疗法的使用正在增加,由于目前正在进行的一些涉及新的α发射器的临床试验,预计会进一步增长。然而,关于α释放放射性核素的辐射安全方面的文献有限,大多数现有文献涉及223Ra。一般来说,释放α的放射性核素的职业性照射预期很低,公众从外部照射所受的剂量也很低。但是,必须注意避免皮肤污染、吸入和误食。并非所有释放α的放射性核素都是相同的,它们通常具有非常不同的相关衰变链和排放物。应仔细检查衰变链和制造过程,以确定任何长寿命的后代或杂质。这些可能对限制职业照射和废物管理所需的辐射安全程序产生影响。对公众的剂量也必须进行评估,这些剂量要么是直接因接触接受放射治疗的病人而产生,要么是通过废物流产生。在开始一项涉及准备和管理的所有方面以及任何可预见事件(如皮肤污染或患者死亡)的新服务时,应进行风险评估,并在这些情况下采取适当步骤。随着α放射疗法应用的增加,有必要发表更多关于放射安全方面的文献,特别是关于新的α放射疗法的文献,它们往往与现有的放射疗法有很大的不同。
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