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Performing radiosynthesis in microvolumes to maximize molar activity of tracers for positron emission tomography

机译:在微体积中进行放射合成,以最大化正电子发射断层显像剂的示踪剂的摩尔活性

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Positron emission tomography (PET) is a molecular diagnostic imaging technology to quantitatively visualize biological processes in vivo. For many applications, including imaging of low-tissue density targets (e.g., neuroreceptors), imaging in small animals, and evaluation of novel tracers, the injected PET tracer must be produced with high molar activity to ensure low occupancy of biological targets and avoid pharmacologic effects. Additionally, high molar activity is essential for tracers with lengthy syntheses or tracers transported to distant imaging sites. Here we show that radiosynthesis of PET tracers in microliter volumes instead of conventional milliliter volumes results in substantially increased molar activity, and we identify the most relevant variables affecting this parameter. Furthermore, using the PET tracer [18F]fallypride, we illustrate that molar activity can have a significant impact on biodistribution. With full automation, microdroplet platforms could provide a means for radiochemists to routinely, conveniently, and safely produce PET tracers with high molar activity.
机译:正电子发射断层扫描(PET)是一种分子诊断成像技术,可以定量地可视化体内的生物过程。对于许多应用,包括低组织密度靶标(例如神经受体)的成像,小动物的成像以及新型示踪剂的评估,必须以高摩尔活度生产注入的PET示踪剂,以确保生物靶标的低占有率并避免药理学效果。此外,高摩尔活性对于具有较长合成时间的示踪剂或转运至遥远成像部位的示踪剂至关重要。在这里,我们显示了以微升体积代替传统的毫升体积进行PET示踪剂的放射合成会导致摩尔活性显着提高,并且我们确定了影响该参数的最相关变量。此外,使用PET示踪剂[18F]氟吡格雷,我们证明了磨牙活性可能会对生物分布产生重大影响。通过完全自动化,微滴平台可以为放射化学家提供常规,方便和安全地生产具有高摩尔活性的PET示踪剂的手段。

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