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Design and Optimization of Coin-Shaped Microreactor Chips for PET Radiopharmaceutical Synthesis

机译:用于PET放射性药物合成的硬币形微反应器芯片的设计和优化

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摘要

An integrated elastomeric microfluidic device, with a footprint the size of a postage stamp, has been designed and optimized for multistep radiosynthesis of PET tracers. Methods: The unique architecture of the device is centered around a 5-µL coin-shaped reactor, which yields reaction efficiency and speed from a combination of high reagent concentration, pressurized reactions, and rapid heat and mass transfer. Its novel features facilitate mixing, solvent exchange, and product collection. New mixing mechanisms assisted by vacuum, pressure, and chemical reactions are exploited. Results: The architecture of the reported reactor is the first that has allowed batch-mode microfluidic devices to produce radiopharmaceuticals of sufficient quality and quantity to be validated by in vivo imaging. Conclusion: The reactor has the potential to produce multiple human doses of ^(18)F-FDG; the most impact, however, is expected in the synthesis of PET radiopharmaceuticals that can be made only with low yields by currently available equipment.
机译:已经设计并优化了集成弹性体微流体装置,其占地面积仅为邮票的大小,可用于PET示踪剂的多步放射性合成。方法:该设备的独特架构以5 µL硬币形反应器为中心,该反应器通过高试剂浓度,加压反应以及快速的传热和传质相结合来提高反应效率和速度。其新颖的功能有助于混合,溶剂交换和产品收集。利用了真空,压力和化学反应辅助的新混合机制。结果:报道的反应堆的结构是第一个允许批处理模式的微流体装置生产质量和数量足以通过体内成像验证的放射性药物的结构。结论:该反应堆具有生产多种人剂量的^(18)F-FDG的潜力。然而,预计在PET放射性药物的合成中产生最大的影响,而PET放射性药物的合成只能通过当前可用的设备以低收率制得。

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