首页> 外文期刊>The Journal of Nuclear Medicine >Preclinical Evaluation and Quantification of 18F-FPEB as a Radioligand for PET Imaging of the Metabotropic Glutamate Receptor 5
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Preclinical Evaluation and Quantification of 18F-FPEB as a Radioligand for PET Imaging of the Metabotropic Glutamate Receptor 5

机译:18F-FPEB作为放射性配体的代谢型谷氨酸受体5的临床前评估和定量5

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id="p-2">The metabotropic glutamate receptor 5 (mGluR5) is a high-interest target for PET imaging because it plays a role in several pathologies, including addiction, schizophrenia, and fragile X syndrome. >Methods: We studied the pharmacokinetics of 18F-FPEB (3-18F-fluoro-5-(2-pyridinylethynyl)benzonitrile), a selective PET radioligand for mGluR5, and used it to quantify mGluR5 in rat brain. Quantification was performed using both arterial sampling in combination with compartment models and simplified reference methods. The simplified reference tissue model (SRTM), Ichise's original multi-linear reference tissue model (MRTMO), and Logan noninvasive were tested as reference models with nondisplaceable binding (BPND) as outcome parameter. Additionally, test-retest scans were obtained in 6 animals. >Results: 18F-FPEB uptake in rat brain was consistent with its known distribution. No radiometabolites were present in the brain, and binding was specific as shown in blocking experiments, which also confirmed the cerebellum as a viable reference region. A 2-tissue-compartment model was used to determine BPND for the striatum (11.7 ?± 1.5), nucleus accumbens (10.6 ?± 2.0), hippocampus (9.0 ?± 1.2), cortex (7.2 ?± 1.0), and thalamus (4.0 ?± 0.9). Reference methods were able to estimate these values with small bias (2%). Test-retest analysis showed high repeatability between scans below 6%, also for shorter scan durations of 30 and 60 min. >Conclusion: Because of its favorable reversible kinetics, high specificity, and absence of brain radiometabolites 18F-FPEB proves a highly useful tracer for in vivo visualization of the mGluR5 in rat brain. Moreover, reference tissue models allow noninvasive, rapid scanning with good test-retest.
机译:id =“ p-2”>代谢型谷氨酸受体5(mGluR5)是PET成像的重要目标,因为它在包括成瘾,精神分裂症和易碎X综合征在内的多种病理学中起作用。 >方法:我们研究了 18 F-FPEB(3- 18 F-氟-5-(2-吡啶基乙炔基)苄腈)的药代动力学,一种用于mGluR5的选择性PET放射性配体,并用于量化大鼠脑中的mGluR5。使用动脉采样结合隔室模型和简化的参考方法进行定量。测试了简化的参考组织模型(SRTM),Ichise的原始多线性参考组织模型(MRTM O )和Logan非侵入性作为具有不可置换结合的参考模型(BP ND )作为结果参数。另外,在6只动物中获得了重新测试扫描。 >结果: 18 大鼠脑中F-FPEB的摄入与其已知分布一致。如阻断实验所示,大脑中不存在放射性代谢产物,并且结合具有特异性,这也证实了小脑是可行的参考区域。使用两室模型确定纹状体(11.7±1.5),伏隔核(10.6±±2.0),海马(9.0±±1.2),皮质(7.2)的BP ND α±1.0)和丘脑(4.0±±0.9)。参考方法能够以较小的偏差(<2%)估算这些值。重测分析表明,低于6%的扫描之间具有很高的可重复性,而且扫描时间较短(30和60分钟)。 >结论:由于其良好的可逆动力学,高特异性以及不存在脑放射性代谢物,因此 18 F-FPEB被证明是对大鼠大脑中mGluR5进行体内可视化的高度有用的示踪剂。此外,参考组织模型允许无创,快速扫描并具有良好的测试重测性。

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