Discovery of a highly specific 18F-labeled PET ligand for phosphodiesterase 10A enabled by novel spirocyclic iodonium ylide radiofluorination

放射性配体 PDE10A型 结合势 磷酸二酯酶 化学 放射合成 体内 正电子发射断层摄影术 亲脂性 纹状体 药理学 内科学 生物物理学 医学 生物化学 体外 生物 神经科学 受体 多巴胺 生物技术
作者
Zhiwei Xiao,Huiyi Wei,Yi Xu,Ahmed Haider,Junjie Wei,Shiyu Yuan,Jian Rong,Chunyu Zhao,Guocong Li,Wei-Bin Zhang,Huangcan Chen,Yuefeng Li,Lingling Zhang,Jiyun Sun,Shaojuan Zhang,Hai‐Bin Luo,Shihai Yan,Qijun Cai,Lu Hou,Chao Che,Steven H. Liang,Lu Wang
出处
期刊:Acta Pharmaceutica Sinica B [Elsevier]
卷期号:12 (4): 1963-1975 被引量:5
标识
DOI:10.1016/j.apsb.2021.11.014
摘要

As a member of cyclic nucleotide phosphodiesterase (PDE) enzyme family, PDE10A is in charge of the degradation of cyclic adenosine (cAMP) and guanosine monophosphates (cGMP). While PDE10A is primarily expressed in the medium spiny neurons of the striatum, it has been implicated in a variety of neurological disorders. Indeed, inhibition of PDE10A has proven to be of potential use for the treatment of central nervous system (CNS) pathologies caused by dysfunction of the basal ganglia-of which the striatum constitutes the largest component. A PDE10A-targeted positron emission tomography (PET) radioligand would enable a better assessment of the pathophysiologic role of PDE10A, as well as confirm the relationship between target occupancy and administrated dose of a given drug candidate, thus accelerating the development of effective PDE10A inhibitors. In this study, we designed and synthesized a novel 18F-aryl PDE10A PET radioligand, codenamed [18F]P10A-1910 ([18F]9), in high radiochemical yield and molar activity via spirocyclic iodonium ylide-mediated radiofluorination. [18F]9 possessed good in vitro binding affinity (IC50 = 2.1 nmol/L) and selectivity towards PDE10A. Further, [18F]9 exhibited reasonable lipophilicity (logD = 3.50) and brain permeability (Papp > 10 × 10-6 cm/s in MDCK-MDR1 cells). PET imaging studies of [18F]9 revealed high striatal uptake and excellent in vivo specificity with reversible tracer kinetics. Preclinical studies in rodents revealed an improved plasma and brain stability of [18F]9 when compared to the current reference standard for PDE10A-targeted PET, [18F]MNI659. Further, dose-response experiments with a series of escalating doses of PDE10A inhibitor 1 in rhesus monkey brains confirmed the utility of [18F]9 for evaluating target occupancy in vivo in higher species. In conclusion, our results indicated that [18F]9 is a promising PDE10A PET radioligand for clinical translation.

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