Are radiopharmaceuticals self-sterilizing? Radiation effect of gallium-68 and lutetium-177 on bacillus pumilus and staphylococcus succinus.

IF 1 4区 医学 Q4 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Nuklearmedizin-nuclear Medicine Pub Date : 2021-12-01 Epub Date: 2021-08-20 DOI:10.1055/a-1547-0628
Simon Poetzsch, Winfried Brenner, Sarah Spreckelmeyer
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引用次数: 1

Abstract

Background: For radiopharmaceuticals, aseptic preparation in combination with filtration is the most commonly used sterilizing method. In general, the production of radiopharmaceuticals needs to fulfil the requirements of good manufacturing practice. In the scope of this work, we focused on the positron emitter gallium-68 and on the therapeutically used beta- and gamma-emitter lutetium-177, as they are routinely used for in-house synthesis of radiopharmaceuticals in nuclear medicine departments. Our hypothesis is, that radiopharmaceuticals might be self-sterilizing due to a high radioactivity concentration and high-energy radionuclides in the preparation for intravenous injections.

Results: Incubation with gallium-68 and lutetium-177 for both 30 minutes and 5 hours post-dispensing did not cause any significant effect on bacteria growth. As the theoretical dose is only 0.1-0.6 % of the Ph. Eur. recommended dose of 25 kGy, we conclude that the beta and positron energy of lutetium-177 and gallium-68 as used for standard radiopharmaceutical in-house production is not sufficient to decrease the number of colony forming units compared to the control values.

Conclusions: Based on these findings, gallium-68 and lutetium-177 labeled radiopharmaceuticals are not self-sterilizing under the tested conditions with respect to bacillus pumilus and staphylococcus succinus. Consequently, strict aseptic preparation conditions in addition to end-sterilization of the radiopharmaceutical e.g. through membrane filtration are strongly advised for in-house productions.

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放射性药物能自我消毒吗?镓-68和镥-177对矮芽孢杆菌和琥珀葡萄球菌的辐射效应。
背景:对于放射性药物,无菌制备与过滤相结合是最常用的灭菌方法。一般来说,放射性药物的生产需要满足良好生产规范的要求。在这项工作的范围内,我们专注于正电子发射器镓-68和治疗上使用的β和γ发射器镥-177,因为它们通常用于核医学部门内部合成放射性药物。我们的假设是,由于高放射性浓度和高能放射性核素在静脉注射的制备中,放射性药物可能是自消毒的。结果:加药后镓-68和镥-177孵育30分钟和5小时对细菌生长无显著影响。由于理论剂量仅为ph值的0.1- 0.6%。在推荐剂量为25kgy的情况下,我们得出结论,用于标准放射性药物内部生产的镥-177和镓-68的β和正电子能与控制值相比不足以减少菌落形成单位的数量。结论:基于这些发现,镓-68和镥-177标记的放射性药物在测试条件下对短小芽孢杆菌和琥珀葡萄球菌不能自杀菌。因此,严格的无菌制备条件以及放射性药物的末端灭菌,例如通过膜过滤,强烈建议用于内部生产。
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来源期刊
CiteScore
1.70
自引率
13.30%
发文量
267
审稿时长
>12 weeks
期刊介绍: Als Standes- und Fachorgan (Organ von Deutscher Gesellschaft für Nuklearmedizin (DGN), Österreichischer Gesellschaft für Nuklearmedizin und Molekulare Bildgebung (ÖGN), Schweizerischer Gesellschaft für Nuklearmedizin (SGNM, SSNM)) von hohem wissenschaftlichen Anspruch befasst sich die CME-zertifizierte Nuklearmedizin/ NuclearMedicine mit Diagnostik und Therapie in der Nuklearmedizin und dem Strahlenschutz: Originalien, Übersichtsarbeiten, Referate und Kongressberichte stellen aktuelle Themen der Diagnose und Therapie dar. Ausführliche Berichte aus den DGN-Arbeitskreisen, Nachrichten aus Forschung und Industrie sowie Beschreibungen innovativer technischer Geräte, Einrichtungen und Systeme runden das Konzept ab. Die Abstracts der Jahrestagungen dreier europäischer Fachgesellschaften sind Bestandteil der Kongressausgaben. Nuklearmedizin erscheint regelmäßig mit sechs Ausgaben pro Jahr und richtet sich vor allem an Nuklearmediziner, Radiologen, Strahlentherapeuten, Medizinphysiker und Radiopharmazeuten.
期刊最新文献
The Medical Informatics Initiative and the Network University Medicine - Perspectives for Nuclear Medicine. Combined morphologic-metabolic biomarkers from [18F]FDG-PET/CT stratify prognostic groups in low-risk NSCLC. NuklearMedizin 2024: Abstract-Einreichung bis zum 1. November geöffnet! DGN-Forschungs- und -Förderpreise Preisverleihungen
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