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两种甘氨酸转运体1放射性示踪剂[11C]GSK931145和[18F]MK-6577在狒狒中的比较评估。

Comparative evaluation of two glycine transporter 1 radiotracers [11C]GSK931145 and [18F]MK-6577 in baboons.

作者信息

Zheng Ming-Qiang, Lin Shu-Fei, Holden Daniel, Naganawa Mika, Ropchan Jim R, Najafzaden Soheila, Kapinos Michael, Tabriz Mike, Carson Richard E, Hamill Terence G, Huang Yiyun

机构信息

Department of Radiology and Biomedical Imaging, Yale University School of Medicine, PET Center, New Haven, Connecticut.

Discovery Imaging, Merck Research Laboratories, West Point, Pennsylvania.

出版信息

Synapse. 2016 Mar;70(3):112-20. doi: 10.1002/syn.21879. Epub 2016 Jan 6.

Abstract

Glycine transporter type-1 (GlyT1) has been proposed as a target for drug development for schizophrenia. PET imaging with a GlyT1 specific radiotracer will allow for the measurement of target occupancy of GlyT1 inhibitors, and for in vivo investigation of GlyT1 alterations in schizophrenia. We conducted a comparative evaluation of two GlyT1 radiotracers, [(11) C]GSK931145, and [(18) F]MK-6577, in baboons. Two baboons were imaged with [(11) C]GSK931145 and [(18) F]MK-6577. Blocking studies with GSK931145 (0.3 or 0.2 mg/kg) were conducted to determine the level of tracer specific binding. [(11) C]GSK931145 and [(18) F]MK-6577 were synthesized in good yield and high specific activity. Moderately fast metabolism was observed for both tracers, with ∼ 30% of parent at 30 min post-injection. In the brain, both radiotracers showed good uptake and distribution profiles consistent with regional GlyT1 densities. [(18) F]MK-6577 displayed higher uptake and faster kinetics than [(11) C]GSK931145. Time activity curves were well described by the two-tissue compartment model. Regional volume of distribution (VT ) values were higher for [(18) F]MK-6577 than [(11) C]GSK931145. Pretreatment with GSK931145 reduced tracer uptake to a homogeneous level throughout the brain, indicating in vivo binding specificity and lack of a reference region for both radiotracers. Linear regression analysis of VT estimates between tracers indicated higher specific binding for [(18) F]MK-6577 than [(11) C]GSK931145, consistent with higher regional binding potential (BPND ) values of [(18) F]MK-6577 calculated using VT from the baseline scans and non-displaceable distribution volume (VND ) derived from blocking studies. [(18) F]MK-6577 appears to be a superior radiotracer with higher brain uptake, faster kinetics, and higher specific binding signals than [(11) C]GSK931145.

摘要

甘氨酸转运体-1(GlyT1)已被提议作为精神分裂症药物开发的靶点。使用GlyT1特异性放射性示踪剂进行PET成像将能够测量GlyT1抑制剂的靶点占有率,并对精神分裂症患者体内GlyT1的变化进行研究。我们在狒狒身上对两种GlyT1放射性示踪剂[(11)C]GSK931145和[(18)F]MK-6577进行了比较评估。用[(11)C]GSK931145和[(18)F]MK-6577对两只狒狒进行成像。用GSK931145(0.3或0.2mg/kg)进行阻断研究以确定示踪剂特异性结合水平。[(11)C]GSK931145和[(18)F]MK-6577的合成产率高且比活度高。两种示踪剂均观察到中等速度的代谢,注射后30分钟时约30%为母体。在脑中,两种放射性示踪剂均显示出良好的摄取和分布情况,与区域GlyT1密度一致。[(18)F]MK-6577比[(11)C]GSK931145表现出更高的摄取和更快的动力学。时间-活度曲线可用双组织室模型很好地描述。[(18)F]MK-6577的区域分布容积(VT)值高于[(11)C]GSK931145。用GSK931145预处理可将示踪剂摄取降低至全脑均匀水平,表明两种放射性示踪剂在体内的结合特异性且缺乏参考区域。示踪剂之间VT估计值的线性回归分析表明,[(18)F]MK-6577比[(11)C]GSK931145具有更高的特异性结合,这与使用基线扫描的VT和阻断研究得出的不可置换分布容积(VND)计算的[(18)F]MK-6577的更高区域结合潜力(BPND)值一致。[(18)F]MK-6577似乎是一种比[(11)C]GSK931145更优的放射性示踪剂,具有更高的脑摄取、更快的动力学和更高的特异性结合信号。

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