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首页> 外文期刊>Journal of Labelled Compounds and Radiopharmaceuticals >Rapid, one-step, high yielding ~(18)F-labeling of an aryltrifluoroborate bioconjugate by isotope exchange at very high specific activity
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Rapid, one-step, high yielding ~(18)F-labeling of an aryltrifluoroborate bioconjugate by isotope exchange at very high specific activity

机译:通过非常高的比活度进行同位素交换,快速,一步一步,高产率〜(18)F-标记芳基三氟硼酸酯生物共轭物

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摘要

A rapid, single step, aqueous ~(18)F-labeling method that proceeds under mild conditions to provide radiotracers in high radioche-mical yield and at high specific activity represents a long-standing challenge. Arylboronates capture aqueous ~(18)F-fluoride ion in buffered pH 2-3 at moderate temperature to provide a highly polar ~(18)F-ArBF3 anion. Similarly, ~(19)F-~(18)F isotope exchange on a ~(19)F-ArBF_3~- should create an ~(18)F-ArBF_3~-. We hypothesized that this reaction would proceed in volumes that would be amenable to the high levels of ~(18)F-activity used in clinical hospitals. In order to measure both radiochemical and chemical yields, along with specific activity, we linked an alkyne-~(19)F-ArBF3 to rhodamine azide by standard click chemistry to afford a precursor Rh-~(19)F-ArBF_3~-. This precursor was aliquoted in portions of 50nmol and lyophilized for on-demand use. Using robotic manipulators in a hot cell, we combined >29.6GBq (800 mCi) and 50 nmol of the Rh-~(19)F-ArBF3 in aqueous dimethylformamide at buffered pH 2-3. Following mild heating (40 C) for 10-15 min, the reaction was quenched and analyzed. We observed radiochemical yields of 50% and specific activities of nearly 555 GBq/ftmol (15 Ci/fjimol). Similar radiochemical yields and slightly lower specific activities were also obtained with ~400 mCi (n = 2). With radiochemical yields in the hundreds of millicuries and specific activities that are 3-10-fold higher than most radiotracers, this method is very attractive method for preparing clinically useful radiotracers. Moreover, the ability to produce tracers at extraordinarily high specific activities expands the distribution time window from production labs to distant positron emission tomography scanners.
机译:在温和条件下进行快速,一步法的〜(18)F水溶液标记方法,以高放射化学产率和高比活度提供放射性示踪剂,这是一个长期的挑战。芳基硼酸酯在中等温度下在缓冲的pH 2-3中捕获〜(18)F-氟离子水溶液,以提供高极性〜(18)F-ArBF3阴离子。类似地,在〜(19)F-ArBF_3〜-上的〜(19)F-〜(18)F同位素交换应创建〜(18)F-ArBF_3〜-。我们假设该反应将以适合临床医院使用的高水平〜(18)F-活性的量进行。为了测量放射化学和化学产率以及比活度,我们通过标准点击化学将炔烃-((19)F-ArBF3)与若丹明叠氮化物连接,得到前体Rh-〜(19)F-ArBF_3-。将该前体以50nmol的份等分,并冻干以按需使用。在热室中使用机器人操纵器,我们在缓冲的pH 2-3中将> 29.6GBq(800 mCi)和50 nmol的Rh-〜(19)F-ArBF3合并在二甲基甲酰胺水溶液中。温和加热(40℃)10-15分钟后,将反应淬灭并分析。我们观察到放射化学产率为50%,比活度接近555 GBq / ftmol(15 Ci / fjimol)。在〜400 mCi(n = 2)下也获得了相似的放射化学收率和略低的比活。由于放射化学的产率为数百个世纪,并且比活度是大多数放射性示踪剂的3-10倍,因此该方法是制备临床上有用的放射性示踪剂的非常有吸引力的方法。此外,以极高的比活产生示踪剂的能力扩大了从生产实验室到远距离正电子发射断层扫描仪的分配时间窗口。

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