In Vitro and in Vivo Evaluation of 11C-Labeled Azetidinecarboxylates for Imaging Monoacylglycerol Lipase by PET Imaging Studies

通过 PET 成像研究对 11C 标记氮杂环丁烷羧酸盐对单酰甘油脂肪酶进行体外和体内成像评估

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作者:Ran Cheng, Wakana Mori, Longle Ma, Mireille Alhouayek, Akiko Hatori, Yiding Zhang, Daisuke Ogasawara, Gengyang Yuan, Zhen Chen, Xiaofei Zhang, Hang Shi, Tomoteru Yamasaki, Lin Xie, Katsushi Kumata, Masayuki Fujinaga, Yuji Nagai, Takafumi Minamimoto, Mona Svensson, Lu Wang, Yunfei Du, Mary Jo Ondrech

Abstract

Monoacylglycerol lipase (MAGL) is the principle enzyme for metabolizing endogenous cannabinoid ligand 2-arachidonoyglycerol (2-AG). Blockade of MAGL increases 2-AG levels, resulting in subsequent activation of the endocannabinoid system, and has emerged as a novel therapeutic strategy to treat drug addiction, inflammation, and neurodegenerative diseases. Herein we report a new series of MAGL inhibitors, which were radiolabeled by site-specific labeling technologies, including 11C-carbonylation and spirocyclic iodonium ylide (SCIDY) radiofluorination. The lead compound [11C]10 (MAGL-0519) demonstrated high specific binding and selectivity in vitro and in vivo. We also observed unexpected washout kinetics with these irreversible radiotracers, in which in vivo evidence for turnover of the covalent residue was unveiled between MAGL and azetidine carboxylates. This work may lead to new directions for drug discovery and PET tracer development based on azetidine carboxylate inhibitor scaffold.

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