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Batch-reactor microfluidic device: first human use of a microfluidically produced PET radiotracer

机译:间歇反应器中的微流体装置:第一人用微流体产生的pET放射性示踪剂的

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摘要

The very first microfluidic device used for the production of 18F-labeled tracers for clinical research is reported along with the first human Positron Emission Tomography scan obtained with a microfluidically produced radiotracer. The system integrates all operations necessary for the transformation of [18F]fluoride in irradiated cyclotron target water to a dose of radiopharmaceutical suitable for use in clinical research. The key microfluidic technologies developed for the device are a fluoride concentration system and a microfluidic batch reactor assembly. Concentration of fluoride was achieved by means of absorption of the fluoride anion on a micro ion-exchange column (5 μL of resin) followed by release of the radioactivity with 45 μL of the release solution (95 ± 3% overall efficiency). The reactor assembly includes an injection-molded reactor chip and a transparent machined lid press-fitted together. The resulting 50 μL cavity has a unique shape designed to minimize losses of liquid during reactor filling and liquid evaporation. The cavity has 8 ports for gases and liquids, each equipped with a 2-way on-chip mechanical valve rated for pressure up to 20.68 bar (300 psi). The temperature is controlled by a thermoelectric heater capable of heating the reactor up to 180 °C from RT in 150 s. A camera captures live video of the processes in the reactor. HPLC-based purification and reformulation units are also integrated in the device. The system is based on “split-box architecture”, with reagents loaded from outside of the radiation shielding. It can be installed either in a standard hot cell, or as a self-shielded unit. Along with a high level of integration and automation, split-box architecture allowed for multiple production runs without the user being exposed to radiation fields. The system was used to support clinical trials of [18F]fallypride, a neuroimaging radiopharmaceutical under IND Application #109,880.
机译:报道了用于生产用于临床研究的 18 F示踪剂的第一个微流控设备,以及用微流控产生的放射性示踪剂获得的首次人类正电子发射断层扫描。该系统将在辐射的回旋加速器目标水中将[ 18 F]氟化物转化为适合于临床研究的放射性药物剂量所需的所有操作进行了整合。为该设备开发的关键微流体技术是氟化物浓缩系统和微流体间歇反应器组件。通过在微离子交换柱(5μL树脂)上吸收氟阴离子,然后用45μL的释放溶液释放放射性(总效率为95±3%)来实现氟的浓缩。该反应堆组件包括注塑成型的反应堆芯片和压装在一起的透明机加工盖。所得的50μL腔具有独特的形状,旨在最大程度地减少反应器填充和液体蒸发过程中的液体损失。该腔有8个用于气体和液体的端口,每个端口都配有一个2通片上机械阀,额定压力高达20.68 bar(300 psi)。温度由热电加热器控制,该热电加热器能够在150 s内将反应器从室温加热到180°C。摄像机捕获反应堆中过程的实时视频。基于HPLC的纯化和重新配制单元也集成在设备中。该系统基于“分体箱结构”,试剂从辐射屏蔽层外部加载。它既可以安装在标准热室中,也可以作为自屏蔽单元安装。除了高水平的集成和自动化功能之外,组合盒体系结构还允许进行多次生产,而用户不会受到辐射场的影响。该系统用于支持[ 18 F] fallypride的临床试验,该药物是IND申请号109,880的神经影像放射药物。

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