Maisonial-Besset Aurélie, Kryza David, Kopka Klaus, Levesque Sophie, Moreau Emmanuel, Wenzel Barbara, Chezal Jean-Michel
Université Clermont Auvergne, Inserm, Imagerie Moléculaire et Stratégies Théranostiques, UMR 1240, Clermont-Ferrand, F-63000, France.
Imthernat, LAGEPP, CNRS UMR 5007, Université de Lyon, Hospices Civils de Lyon, Lyon, F-69622, France.
EJNMMI Radiopharm Chem. 2024 Apr 2;9(1):28. doi: 10.1186/s41181-024-00256-0.
(S)-[F]FETrp is a promising PET radiotracer for imaging IDO1 activity, one of the main enzymes involved in the tryptophan metabolism that plays a key role in several diseases including cancers. To date, the radiosynthesis of this tryptophan analogue remains highly challenging due to partial racemization occurring during the nucleophilic radiofluorination step. This work aims to develop a short, epimerization-free and efficient automated procedure of (S)-[F]FETrp from a corresponding enantiopure tosylate precursor.
Enantiomerically pure (S)- and (R)-FETrp references as well as tosylate precursors (S)- and (R)-3 were obtained from corresponding N-Boc-(L and D)-tryptophan in 2 and 4 steps, respectively. Manual optimisation of the radiolabelling conditions resulted in > 90% radiochemical conversion with more than 99% enantiomeric purity. Based on these results, the (S)-[F]FETrp radiosynthesis was fully automated on a SynChrom R&D EVOI module to produce the radiotracer in 55.2 ± 7.5% radiochemical yield, 99.9% radiochemical purity, 99.1 ± 0.5% enantiomeric excess, and molar activity of 53.2 ± 9.3 GBq/µmol (n = 3).
To avoid racemisation and complicated purification processes, currently encountered for the radiosynthesis of (S)-[F]FETrp, we report herein significant improvements, including a versatile synthesis of enantiomerically pure tosylate precursor and reference compound and a convenient one-pot two-step automated procedure for the radiosynthesis of (S)-[F]FETrp. This optimised and robust production method could facilitate further investigations of this relevant PET radiotracer for imaging IDO1 activity.
(S)-[F]FETrp是一种很有前景的用于成像吲哚胺2,3-双加氧酶1(IDO1)活性的正电子发射断层显像(PET)放射性示踪剂,IDO1是色氨酸代谢中的主要酶之一,在包括癌症在内的多种疾病中起关键作用。迄今为止,由于在亲核放射性氟化步骤中发生部分消旋化,这种色氨酸类似物的放射性合成仍然极具挑战性。这项工作旨在从相应的对映体纯的甲苯磺酸盐前体开发一种简短、无差向异构化且高效的(S)-[F]FETrp自动化合成程序。
分别通过2步和4步从相应的N-叔丁氧羰基-(L和D)-色氨酸获得了对映体纯的(S)-和(R)-FETrp对照品以及甲苯磺酸盐前体(S)-和(R)-3。通过手动优化放射性标记条件,实现了>90%的放射化学转化率和超过99%的对映体纯度。基于这些结果,(S)-[F]FETrp的放射性合成在SynChrom研发EVOI模块上实现了完全自动化,以55.2±7.5%的放射化学产率、99.9%的放射化学纯度、99.1±0.5%的对映体过量和53.2±9.3 GBq/µmol的摩尔活度制备了放射性示踪剂(n = 3)。
为避免目前在(S)-[F]FETrp放射性合成中遇到的消旋化和复杂的纯化过程,我们在此报告了重大改进,包括对映体纯的甲苯磺酸盐前体和对照品的通用合成以及用于(S)-[F]FETrp放射性合成的便捷一锅两步自动化程序。这种优化且稳健的生产方法有助于进一步研究这种用于成像IDO1活性的相关PET放射性示踪剂。