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Automation of 18Ffluoroacetaldehyde synthesis: application to a recombinant human interleukin‐1 receptor antagonist (rhIL‐1RA)

机译:18F氟乙醛合成的自动化:应用于重组人白介素-1受体拮抗剂(rhIL-1RA)

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摘要

[18F]Fluoroacetaldehyde is a biocompatible prosthetic group that has been implemented pre‐clinically using a semi‐automated remotely controlled system. Automation of radiosyntheses permits use of higher levels of [18F]fluoride whilst minimising radiochemist exposure and enhancing reproducibility. In order to achieve full‐automation of [18F]fluoroacetaldehyde peptide radiolabelling, a customised GE Tracerlab FX‐FN with fully programmed automated synthesis was developed.The automated synthesis of [18F]fluoroacetaldehyde is carried out using a commercially available precursor, with reproducible yields of 26% ± 3 (decay‐corrected, n = 10) within 45 min. Fully automated radiolabelling of a protein, recombinant human interleukin‐1 receptor antagonist (rhIL‐1RA), with [18F]fluoroacetaldehyde was achieved within 2 h. Radiolabelling efficiency of rhIL‐1RA with [18F]fluoroacetaldehyde was confirmed using HPLC and reached 20% ± 10 (n = 5).Overall RCY of [18F]rhIL‐1RA was 5% ± 2 (decay‐corrected, n = 5) within 2 h starting from 35 to 40 GBq of [18F]fluoride. Specific activity measurements of 8.11–13.5 GBq/µmol were attained (n = 5), a near three‐fold improvement of those achieved using the semi‐automated approach.The strategy can be applied to radiolabelling a range of peptides and proteins with [18F]fluoroacetaldehyde analogous to other aldehyde‐bearing prosthetic groups, yet automation of the method provides reproducibility thereby aiding translation to Good Manufacturing Practice manufacture and the transformation from pre‐clinical to clinical production.
机译:[ 18 F]氟乙醛是一种生物相容性修复基团,已在临床前使用半自动化的远程控制系统进行了实施。放射性合成的自动化允许使用更高水平的[ 18 F]氟化物,同时最大程度地减少放射化学家的暴露并提高可再现性。为了实现[ 18 F]氟乙醛肽放射性标记的全自动,开发了一种定制的GE Tracerlab FX-FN,它具有完全编程的自动化合成方法。[ 18 F]氟乙醛是使用市售的前驱物进行的,在45分钟内可再现的产率为26%±3(衰减校正,n = 10)。重组人白细胞介素-1受体拮抗剂(rhIL-1RA)与[ 18 F]氟乙醛的全自动放射性标记技术在2小时内即可完成。 HPLC证实rhIL-1RA与[ 18 F]氟乙醛的放射性标记效率达到20%±10(n = 5)。[ 18 F] rhIL的总RCY -1RA从[ 18 F]氟化物的35至40 GBq开始在2 h内为5%±2(衰减校正,n = 5)。比活度测量结果为8.11–13.5qGBq / µmol(n = 5),几乎是使用半自动化方法所获得的三倍。该策略可用于放射性标记具有[< sup> 18 F]氟乙醛,与其他带有醛基的人工基团相似,但该方法的自动化提供了可重复性,从而有助于向良好生产规范生产的转化,以及从临床前生产到临床生产的转变。

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