Department of Nuclear Medicine, Radiochemistry and Biomarker Development Unit, Medical University of Vienna, A-1090 Vienna, Austria.
Nucl Med Biol. 2012 Oct;39(7):1087-92. doi: 10.1016/j.nucmedbio.2012.04.004. Epub 2012 May 23.
Our aim was the optimization of radiochemical parameters for the microfluidic preparation of [(18)F]altanserin. The four main parameters evaluated were (1) precursor concentration, (2) reaction temperature, (3) bolus flow rate through the microreactor and (4) bolus volume.
For the determination of optimal reaction conditions within a flow-through microreactor synthesizer, 5-400 μL of precursor and dried [(18)F]fluoride solution were simultaneously pushed through the temperature-controlled reactor (180-220°C) with defined bolus flow rates of 10-60 μL/min. Radiochemical incorporation yields (RCIYs) were examined using a thin layer chromatography (TLC) set-up and radio- high-performance liquid chromatography (HPLC).
Optimum reaction parameters for the microfluidic set-up were determined as following: 220°C, 5-10 μL/min pump rate per reactant (10-20 μL/min reaction overall flow rate) and 2mg/mL precursor concentration in the reaction mixture. Applying these optimized conditions, RCIYs of 53.7 ± 7.9 were observed for scaled-up preparations. A positive "bolus effect" was observed: applying higher reaction volume resulted in increased RCIYs.
This study proved that the reaction bolus volume is an essential parameter influencing the RCIY of [(18)F]altanserin. A possible explanation is the inhomogeneous distribution within the reaction volume probably caused by diffusion at the bolus interface. This important finding should be considered an important variable for the evaluation of all novel radiotracers labeled using a flow-through reactor device.
我们的目的是优化微流体制备 [(18)F]altanserin 的放射化学参数。评估的四个主要参数是:(1)前体浓度;(2)反应温度;(3)通过微反应器的射流流速;(4)射流体积。
为了在流动式微反应器合成仪中确定最佳反应条件,将 5-400μL 的前体和干燥的 [(18)F] 氟化物溶液以 10-60μL/min 的定义射流流速同时推过控温反应器(180-220°C)。使用薄层层析(TLC)装置和放射性高效液相色谱(HPLC)来检查放射化学收率(RCIYs)。
确定了微流体制备的最佳反应参数如下:220°C,反应物的泵速为 5-10μL/min(总反应流速为 10-20μL/min),反应混合物中的前体浓度为 2mg/mL。在应用这些优化条件下,放大制备的 RCIYs 为 53.7±7.9。观察到了阳性的“射流效应”:应用更高的反应体积会导致 RCIYs 增加。
本研究证明了反应射流体积是影响 [(18)F]altanserin 的 RCIY 的重要参数。一种可能的解释是由于射流界面的扩散,反应体积内的分布不均匀。这一重要发现应被视为使用流动式反应堆设备标记所有新型示踪剂时评估的一个重要变量。