Synthesis and Preliminary Evaluation of an In Vivo Stable 131I-Labeled Deuterated Tropane for Mapping Dopamine
Jiaojiao Zuo1,2, Jing Kang2,3, Jingjing Hong2,4
1School of Pharmaceutical Science, Inner Mongolia Medical University, Hohhot, China.
Abstract:
Dopamine transporter (DAT) is closely associated with neurodegenerative diseases such as Parkinson's disease (PD). To develop an in vivo stable radioligand targeting DAT, we synthesized a novel iodine-131-labeled tropane analog [131I]1 with deuteration on both the N-fluoropropyl and 2β-carbomethoxy positions of the tropane scaffold and then biologically compared with the previously reported analog [131I]FP-CIT-d6 with deuteration only on the N-fluoropropyl group. The radioligand [131I]1 was obtained via a radioiodine-destannylation reaction with a radiochemical yield of ~95%, a radiochemical purity of > 99% and a molar activity of 12.72 GBq/μmol. [131I]1 exhibited a high in vitro binding affinity for DAT with an IC50 value of 2.2 nM. Metabolic stability studies demonstrated that [131I]1 displayed superior in vivo stability compared with [131I]FP-CIT-d6. Biodistribution studies revealed that [131I]1 had better DAT affinity, specificity, and a higher target-to-background ratio than [131I]FP-CIT-d6. Ex vivo autoradiography and blocking experiments validated the selective and reversible binding of [131I]1 to DAT and superiority to [131I]FP-CIT-d6. These preliminary results suggest that deuterated radioligand [131I]1, with enhanced in vivo stability and higher target-to-background ratio, is a promising DAT probe, warranting the development and application of 123I-labeled counterpart ([123I]1) for SPECT imaging in DAT-related disorders.
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