He Yingfang, Zheng MingQiang, Gu Jiwei, Reichert Lisa, Trimborn Johannes, Zhang Hui, Keller Claudia, Crosby Mallory, Collin Ludovic, Heer Dominik, Pavlovic Anto, Topp Andreas, Wittwer Matthias Beat, Grether Uwe, Gobbi Luca, Schibli Roger, Huang Yiyun, Mu Linjing
Center for Radiopharmaceutical Sciences, Institute of Pharmaceutical Sciences, Department of Chemistry and Applied Biosciences, ETH Zurich, Zurich, CH-8093, Switzerland.
Institute of Radiation Medicine, Fudan University, Xietu Road 2094, Shanghai, 200032, China.
Eur J Nucl Med Mol Imaging. 2025 Mar;52(4):1556-1565. doi: 10.1007/s00259-024-07013-0. Epub 2024 Dec 14.
The monoacylglycerol lipase (MAGL) plays a pivotal role in modulating the endocannabinoid system and is considered an attractive therapeutic target for diseases in both the central nervous system and periphery. The current study aimed to develop and evaluate a suitable carbon-11 labeled tracer for imaging MAGL in preclinical studies.
(R)-YH168 was synthesized via a multi-step pathway and its half-maximal inhibitory concentration (IC) values were measured using an enzymatic assay. Radiosynthesis of (R)-[C]YH168 was accomplished by C-methylation via Suzuki cross-coupling of a pinacol boron precursor. In vitro autoradiography was performed using brain tissues from MAGL knockout and the corresponding wild-type mice. The metabolic stability of (R)-[C]YH168 in mouse brain and plasma was assessed 5 min after injection. Dynamic PET scans were conducted on anesthetized mice and rhesus monkey. For studies in non-human primates, arterial blood samples were analyzed to obtain the input function for kinetic modeling. Blocking studies with the irreversible MAGL inhibitor PF-06795071 were performed to assess the binding specificity of (R)-[C]YH168.
(R)-[C]YH168 was synthesized via Suzuki coupling of the phenyl boronic ester with [C]CHI in the presence of palladium catalyst. In vitro autoradiography revealed a heterogeneous distribution pattern of (R)-[C]YH168 with higher binding to MAGL-rich brain regions in wild-type mouse brain slices compared to that of MAGL knockout mice. Dynamic PET imaging in wild-type and MAGL knockout mice confirmed its high specificity and selectivity in mouse brains. In the rhesus monkey, (R)-[C]YH168 displayed good brain permeability. High levels of radioactivity uptake were seen in the cingulate cortex, frontal cortex, cerebellum, occipital cortex, and hippocampus, consistent with MAGL expression. The one-tissue compartment model was appropriate for fitting the regional time-activity curves and provided reliable volume of distribution values across all brain regions. Pretreatment with PF-06795071 (0.1 mg/kg) resulted in almost complete blockade (> 95%) of radioactivity uptake, demonstrating binding specificity of (R)-[C]YH168 to MAGL in the non-human primate brain. The regional non-displaceable binding potential follows the rank order of cingulate cortex ~ frontal cortex ~ insula > putamen > temporal cortex > caudate ~ occipital cortex ~ thalamus > nucleus accumbens ~ hippocampus ~ cerebellum ~ globus pallidus > substantia nigra > amygdala.
(R)-[C]YH168 is a promising PET probe for imaging and quantifying MAGL in the brains of mice and non-human primates. This C-labeled tracer holds great potential for translation into human subjects and offers the possibility of performing multiple PET scans on the same subject within a single day.
单酰甘油脂肪酶(MAGL)在调节内源性大麻素系统中起关键作用,被认为是中枢神经系统和外周疾病的一个有吸引力的治疗靶点。当前研究旨在开发并评估一种适用于临床前研究中对MAGL进行成像的碳-11标记示踪剂。
(R)-YH168通过多步途径合成,其半数最大抑制浓度(IC)值使用酶促测定法测量。(R)-[¹¹C]YH168的放射性合成通过频哪醇硼前体的铃木交叉偶联进行¹¹C-甲基化来完成。使用来自MAGL基因敲除小鼠和相应野生型小鼠的脑组织进行体外放射自显影。注射后5分钟评估(R)-[¹¹C]YH168在小鼠脑和血浆中的代谢稳定性。对麻醉的小鼠和恒河猴进行动态PET扫描。对于非人灵长类动物研究,分析动脉血样本以获得用于动力学建模的输入函数。使用不可逆的MAGL抑制剂PF-06795071进行阻断研究以评估(R)-[¹¹C]YH168的结合特异性。
(R)-[¹¹C]YH168通过在钯催化剂存在下苯基硼酸酯与[¹¹C]CHI的铃木偶联合成。体外放射自显影显示,与MAGL基因敲除小鼠相比,(R)-[¹¹C]YH168在野生型小鼠脑切片中与富含MAGL的脑区结合更高,呈现出异质分布模式。野生型和MAGL基因敲除小鼠的动态PET成像证实了其在小鼠脑中的高特异性和选择性。在恒河猴中,(R)-[¹¹C]YH168显示出良好的脑通透性。在扣带回皮质、额叶皮质、小脑、枕叶皮质和海马体中观察到高水平的放射性摄取,与MAGL表达一致。单组织隔室模型适用于拟合区域时间-活度曲线,并提供所有脑区可靠的分布容积值。用PF-06795071(0.1mg/kg)预处理导致放射性摄取几乎完全阻断(>95%),证明了(R)-[¹¹C]YH168在非人灵长类动物脑中与MAGL的结合特异性。区域不可置换结合潜能遵循以下顺序:扣带回皮质额叶皮质岛叶>壳核>颞叶皮质>尾状核枕叶皮质丘脑>伏隔核海马体小脑~苍白球>黑质>杏仁核。
(R)-[¹¹C]YH168是一种用于在小鼠和非人灵长类动物脑中对MAGL进行成像和定量的有前景的PET探针。这种¹¹C标记的示踪剂具有转化为人体研究对象的巨大潜力,并提供了在同一天对同一受试者进行多次PET扫描的可能性。