Preclinical Evaluation of Benzazepine-Based PET Radioligands (R)- and (S)-11C-Me-NB1 Reveals Distinct Enantiomeric Binding Patterns and a Tightrope Walk Between GluN2B-and σ1-Receptor-Targeted PET Imaging

被引:30
|
作者
Haider, Ahmed [1 ]
Herder, Adrienne Mueller [1 ]
Kramer, Stefanie D. [1 ]
Varisco, Jasmine [1 ]
Keller, Claudia [1 ]
Frauenknecht, Katrin [2 ]
Auberson, Yves P. [3 ]
Temme, Louisa [4 ]
Robaa, Dina [5 ]
Sippl, Wolfgang [5 ]
Schibli, Roger [1 ,6 ]
Wuensch, Bernhard [4 ]
Mu, Linjing [1 ,6 ]
Ametamey, Simon M. [1 ]
机构
[1] Swiss Fed Inst Technol, Inst Pharmaceut Sci, Zurich, Switzerland
[2] Univ Zurich, Inst Neuropathol, Univ Hosp Zurich, Zurich, Switzerland
[3] Novartis Inst BioMed Res, Basel, Switzerland
[4] Univ Munster, Inst Pharmaceut & Med Chem, Munster, Germany
[5] Martin Luther Univ Halle Wittenberg, Inst Pharm, Halle, Germany
[6] Univ Hosp Zurich, Dept Nucl Med, Zurich, Switzerland
基金
瑞士国家科学基金会;
关键词
PET imaging; GluN2B; sigma(1)-receptor; receptor occupancy; neurodegeneration; NMDA RECEPTOR; MOLECULAR-MECHANISMS; CP-101,606; ANTAGONIST; IFENPRODIL;
D O I
10.2967/jnumed.118.221051
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
The study aims to investigate the performance characteristics of the enantiomers of C-11-Me-NB1, a recently reported PET imaging probe that targets the GluN2B subunit of N-methyl-D-aspartate (NMDA) receptors. Methods: Reference compound Me-NB1 (inhibition constant for hGluN1/GluN2B, 5.4 nM) and the phenolic precursor were prepared via multistep synthesis. Following chiral resolution by high-performance liquid chromatography, enantiopure precursor compounds, (R)-NB1 and (S)-NB1, were labeled with C-11 and validated in rodents using in vitro/ex vivo autoradiography, PET experiments, and dose-response studies. To illustrate the translational relevance, (R)-C-11-Me-NB1 was validated in autoradiographic studies using postmortem human GluN2B-rich cortical and GluN2B-deficient cerebellar brain slices. To determine target engagement, receptor occupancy was assessed at different plasma concentrations of CP101,606, a GluN2B receptor antagonist. Results: The radiosynthesis of (R)- and (S)-11C-Me-NB1 was accomplished in 42% +/- 9% (decay-corrected) radiochemical yields. Molar activity ranged from 40 to 336 GBq/mu mol, and an excellent radiochemical purity of greater than 99% was achieved. Although (R)-C-11-Me-NB1 displayed heterogeneous accumulation with high selectivity for the GluN2B-rich forebrain, (S)-11C-Me-NB1 revealed a homogeneous distribution across all brain regions in rodent brain autoradiograms and predominantly exhibited sigma(1)-receptor binding. Similar to rodent brain, (R)-C-11-Me-NB1 showed in postmortem human brain tissues higher binding in the cortex than in the cerebellum. Coincubation of the GluN2B-antagonist CERC-301 (1 mu M) reduced cortical but not cerebellar binding, demonstrating the specificity of (R)-C-11-Me-NB1 binding to the human GluN2B-containing NMDA receptor. In vivo specificity of (R)-(CMe)-C-11- NB1 in the GluN2B-expressing cortex, striatum, thalamus, and hippocampus was demonstrated by PET imaging in rodents. Applying GluN2B-antagonist eliprodil, an evident dose-response behavior was observed with (R)-C-11-Me-NB1 but not with (S)-(CMe)-C-11-NB1. Our findings further underline the tightrope walk between GluN2B- and sigma(1)-receptor-targeted imaging, illustrated by the entirely different receptor binding behavior of the 2 radioligand enantiomers. Conclusion: (R)-C-11-Me-NB1 is a highly selective and specific PET radioligand for imaging the GluN2B subunit of the NMDA receptor. The entirely different receptor binding behavior of (R)-C-11-Me-NB1 and (S)-C-11-Me-NB1 raises awareness of a delicate balance that is underlying the selective targeting of either GluN2B-carrying NMDA or sigma(1)-receptors.
引用
收藏
页码:1167 / 1173
页数:7
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