Kai Liao, Jia-Hui Chen, Jie Ma, Chen-Chen Dong, Chun-Yang Bi, Ya-Biao Gao, Yuan-Fang Jiang, Tao Wang, Hui-Yi Wei, Lu Hou, Jun-Qi Hu, Jun-Jie Wei, Chun-Yuan Zeng, Yin-Long Li, Sen Yan, Hao Xu, Steven H Liang, Lu Wang
{"title":"[18F]D2-LW223的临床前特征:一种用于神经炎症啮齿动物模型和非人灵长类动物中转运体蛋白18 kDa (TSPO)成像的改良代谢稳定PET示踪剂。","authors":"Kai Liao, Jia-Hui Chen, Jie Ma, Chen-Chen Dong, Chun-Yang Bi, Ya-Biao Gao, Yuan-Fang Jiang, Tao Wang, Hui-Yi Wei, Lu Hou, Jun-Qi Hu, Jun-Jie Wei, Chun-Yuan Zeng, Yin-Long Li, Sen Yan, Hao Xu, Steven H Liang, Lu Wang","doi":"10.1038/s41401-024-01375-9","DOIUrl":null,"url":null,"abstract":"<p><p>Positron emission tomography (PET) targeting translocator protein 18 kDa (TSPO) can be used for the noninvasive detection of neuroinflammation. Improved in vivo stability of a TSPO tracer is beneficial for minimizing the potential confounding effects of radiometabolites. Deuteration represents an important strategy for improving the pharmacokinetics and stability of existing drug molecules in the plasma. This study developed a novel tracer via the deuteration of [<sup>18</sup>F]LW223 and evaluated its in vivo stability and specific binding in neuroinflammatory rodent models and nonhuman primate (NHP) brains. Compared with LW223, D<sub>2</sub>-LW223 exhibited improved binding affinity to TSPO. Compared with [<sup>18</sup>F]LW223, [<sup>18</sup>F]D<sub>2</sub>-LW223 has superior physicochemical properties and favorable brain kinetics, with enhanced metabolic stability and reduced defluorination. Preclinical investigations in rodent models of LPS-induced neuroinflammation and cerebral ischemia revealed specific [<sup>18</sup>F]D<sub>2</sub>-LW223 binding to TSPO in regions affected by neuroinflammation. Two-tissue compartment model analyses provided excellent model fits and allowed the quantitative mapping of TSPO across the NHP brain. These results indicate that [<sup>18</sup>F]D<sub>2</sub>-LW223 holds significant promise for the precise quantification of TSPO expression in neuroinflammatory pathologies of the brain.</p>","PeriodicalId":6942,"journal":{"name":"Acta Pharmacologica Sinica","volume":" ","pages":""},"PeriodicalIF":6.9000,"publicationDate":"2024-08-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Preclinical characterization of [<sup>18</sup>F]D<sub>2</sub>-LW223: an improved metabolically stable PET tracer for imaging the translocator protein 18 kDa (TSPO) in neuroinflammatory rodent models and non-human primates.\",\"authors\":\"Kai Liao, Jia-Hui Chen, Jie Ma, Chen-Chen Dong, Chun-Yang Bi, Ya-Biao Gao, Yuan-Fang Jiang, Tao Wang, Hui-Yi Wei, Lu Hou, Jun-Qi Hu, Jun-Jie Wei, Chun-Yuan Zeng, Yin-Long Li, Sen Yan, Hao Xu, Steven H Liang, Lu Wang\",\"doi\":\"10.1038/s41401-024-01375-9\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Positron emission tomography (PET) targeting translocator protein 18 kDa (TSPO) can be used for the noninvasive detection of neuroinflammation. Improved in vivo stability of a TSPO tracer is beneficial for minimizing the potential confounding effects of radiometabolites. Deuteration represents an important strategy for improving the pharmacokinetics and stability of existing drug molecules in the plasma. This study developed a novel tracer via the deuteration of [<sup>18</sup>F]LW223 and evaluated its in vivo stability and specific binding in neuroinflammatory rodent models and nonhuman primate (NHP) brains. Compared with LW223, D<sub>2</sub>-LW223 exhibited improved binding affinity to TSPO. Compared with [<sup>18</sup>F]LW223, [<sup>18</sup>F]D<sub>2</sub>-LW223 has superior physicochemical properties and favorable brain kinetics, with enhanced metabolic stability and reduced defluorination. Preclinical investigations in rodent models of LPS-induced neuroinflammation and cerebral ischemia revealed specific [<sup>18</sup>F]D<sub>2</sub>-LW223 binding to TSPO in regions affected by neuroinflammation. Two-tissue compartment model analyses provided excellent model fits and allowed the quantitative mapping of TSPO across the NHP brain. These results indicate that [<sup>18</sup>F]D<sub>2</sub>-LW223 holds significant promise for the precise quantification of TSPO expression in neuroinflammatory pathologies of the brain.</p>\",\"PeriodicalId\":6942,\"journal\":{\"name\":\"Acta Pharmacologica Sinica\",\"volume\":\" \",\"pages\":\"\"},\"PeriodicalIF\":6.9000,\"publicationDate\":\"2024-08-29\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Acta Pharmacologica Sinica\",\"FirstCategoryId\":\"3\",\"ListUrlMain\":\"https://doi.org/10.1038/s41401-024-01375-9\",\"RegionNum\":1,\"RegionCategory\":\"医学\",\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q1\",\"JCRName\":\"CHEMISTRY, MULTIDISCIPLINARY\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Acta Pharmacologica Sinica","FirstCategoryId":"3","ListUrlMain":"https://doi.org/10.1038/s41401-024-01375-9","RegionNum":1,"RegionCategory":"医学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"CHEMISTRY, MULTIDISCIPLINARY","Score":null,"Total":0}
Preclinical characterization of [18F]D2-LW223: an improved metabolically stable PET tracer for imaging the translocator protein 18 kDa (TSPO) in neuroinflammatory rodent models and non-human primates.
Positron emission tomography (PET) targeting translocator protein 18 kDa (TSPO) can be used for the noninvasive detection of neuroinflammation. Improved in vivo stability of a TSPO tracer is beneficial for minimizing the potential confounding effects of radiometabolites. Deuteration represents an important strategy for improving the pharmacokinetics and stability of existing drug molecules in the plasma. This study developed a novel tracer via the deuteration of [18F]LW223 and evaluated its in vivo stability and specific binding in neuroinflammatory rodent models and nonhuman primate (NHP) brains. Compared with LW223, D2-LW223 exhibited improved binding affinity to TSPO. Compared with [18F]LW223, [18F]D2-LW223 has superior physicochemical properties and favorable brain kinetics, with enhanced metabolic stability and reduced defluorination. Preclinical investigations in rodent models of LPS-induced neuroinflammation and cerebral ischemia revealed specific [18F]D2-LW223 binding to TSPO in regions affected by neuroinflammation. Two-tissue compartment model analyses provided excellent model fits and allowed the quantitative mapping of TSPO across the NHP brain. These results indicate that [18F]D2-LW223 holds significant promise for the precise quantification of TSPO expression in neuroinflammatory pathologies of the brain.
期刊介绍:
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