Department of Bioengineering, Henry Samueli School of Engineering, UCLA, Los Angeles, CA 90095, USA.
Lab Chip. 2017 May 16;17(10):1802-1816. doi: 10.1039/c6lc01569g.
Short-lived radiolabeled tracers for positron emission tomography (PET) must be rapidly synthesized, purified, and formulated into injectable solution just prior to imaging. Current radiosynthesizers are generally designed for clinical use, and the HPLC purification and SPE formulation processes often result in a final volume that is too large for preclinical and emerging in vitro applications. Conventional technologies and techniques for reducing this volume tend to be slow, resulting in radioactive decay of the product, and often require manual handling of the radioactive materials. We present a fully-automated microfluidic system based on sweeping gas membrane distillation to rapidly perform the concentration and formulation process. After detailed characterization of the system, we demonstrate fast and efficient concentration and formulation of several PET tracers, evaluate residual solvent content to establish the safety of the formulated tracers for injection, and show that the formulated tracer can be used for in vivo imaging.
用于正电子发射断层扫描(PET)的短寿命放射性示踪剂必须在成像前快速合成、纯化并配制成可注射溶液。目前的放射性药物合成仪通常是为临床使用而设计的,HPLC 纯化和 SPE 配方过程通常会导致最终体积对于临床前和新兴的体外应用来说过大。用于减小该体积的常规技术和方法往往速度较慢,导致产物放射性衰减,并且通常需要手动处理放射性材料。我们提出了一种基于吹扫气体膜蒸馏的全自动化微流控系统,可快速进行浓缩和配方过程。在对系统进行详细表征后,我们演示了几种 PET 示踪剂的快速高效浓缩和配方,评估了残留溶剂含量以确定所配制示踪剂用于注射的安全性,并表明所配制的示踪剂可用于体内成像。