Sarah A Eisenstein, Jon M Koller, Marilyn Piccirillo, Ana Kim, Jo Ann V Antenor-Dorsey, Tom O Videen, Abraham Z Snyder, Morvarid Karimi, Stephen M Moerlein, Kevin J Black, Joel S Perlmutter, Tamara Hershey
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A composite MR-PET image was constructed across 14 healthy adult participants representing average NMB uptake 60 to 120 min after [¹⁸F]NMB injection. Regional peak radioactivity was identified using a peak-finding algorithm. FreeSurfer and manual tracing identified a priori regions of interest (ROI) on each individual's MR image and tissue activity curves were extracted from coregistered PET images. [¹⁸F]NMB binding potentials (BP(ND) s) were calculated using the Logan graphical method with cerebellum as reference region. In eight unique participants, extrastriatal BP(ND) estimates were compared between Logan graphical methods and a three-compartment kinetic tracer model. Radioactivity and BP(ND) levels were highest in striatum, lower in extrastriatal subcortical regions, and lowest in cortical regions relative to cerebellum. Age negatively correlated with striatal BP(ND) s. BP(ND) estimates for extrastriatal ROIs were highly correlated across kinetic and graphical methods. 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引用次数: 43
摘要
多巴胺D2受体家族在运动和神经精神疾病中的作用的PET成像研究受到使用放射配体的限制,这些放射配体对D2和D3受体亚型具有接近相等的亲和力,并且容易与内源性多巴胺竞争。相比之下,放射性配体[¹⁸F] n -甲基苯哌啶醇([¹⁸F]NMB)对D2受体亚型(D2R)具有高选择性和亲和力,对内源性多巴胺不敏感。虽然[¹⁸F]NMB在纹状体中具有高结合水平,但其在测量纹状体外区域D2R的效用尚不清楚。14名健康成人在注射[¹⁸F]NMB后60至120分钟内平均摄取NMB,构建了mri - pet复合图像。使用寻峰算法确定区域峰值放射性。FreeSurfer和手动跟踪在每个个体的MR图像上识别先验感兴趣区域(ROI),并从共配准的PET图像中提取组织活性曲线。[¹⁸F]以小脑为参照区,采用Logan图解法计算NMB结合电位(BP(ND) s)。在8个独特的参与者中,比较了Logan图形方法和三室动力学示踪模型之间的胃外BP(ND)估计。放射性和BP(ND)水平在纹状体中最高,在纹状体外皮层下区域较低,相对于小脑,皮层区域最低。年龄与纹状体BP(ND)负相关。BP(ND)对纹状体外roi的估计在动力学和图形方法中高度相关。我们的研究结果表明,带有[¹⁸F]NMB的PET可以测量胃外区域的特异性结合,使其成为研究健康和患病状态下胃外D2R水平的可行放射配体。
Characterization of extrastriatal D2 in vivo specific binding of [¹⁸F](N-methyl)benperidol using PET.
PET imaging studies of the role of the dopamine D2 receptor family in movement and neuropsychiatric disorders are limited by the use of radioligands that have near-equal affinities for D2 and D3 receptor subtypes and are susceptible to competition with endogenous dopamine. By contrast, the radioligand [¹⁸F]N-methylbenperidol ([¹⁸F]NMB) has high selectivity and affinity for the D2 receptor subtype (D2R) and is not sensitive to endogenous dopamine. Although [¹⁸F]NMB has high binding levels in striatum, its utility for measuring D2R in extrastriatal regions is unknown. A composite MR-PET image was constructed across 14 healthy adult participants representing average NMB uptake 60 to 120 min after [¹⁸F]NMB injection. Regional peak radioactivity was identified using a peak-finding algorithm. FreeSurfer and manual tracing identified a priori regions of interest (ROI) on each individual's MR image and tissue activity curves were extracted from coregistered PET images. [¹⁸F]NMB binding potentials (BP(ND) s) were calculated using the Logan graphical method with cerebellum as reference region. In eight unique participants, extrastriatal BP(ND) estimates were compared between Logan graphical methods and a three-compartment kinetic tracer model. Radioactivity and BP(ND) levels were highest in striatum, lower in extrastriatal subcortical regions, and lowest in cortical regions relative to cerebellum. Age negatively correlated with striatal BP(ND) s. BP(ND) estimates for extrastriatal ROIs were highly correlated across kinetic and graphical methods. Our findings indicate that PET with [¹⁸F]NMB measures specific binding in extrastriatal regions, making it a viable radioligand to study extrastriatal D2R levels in healthy and diseased states.