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采用正电子发射断层扫描(PET)和2-18F-氟-A-85380对松鼠猴脑烟碱型乙酰胆碱受体进行定量分析的脑外参考区域方法的验证

Validation of an extracerebral reference region approach for the quantification of brain nicotinic acetylcholine receptors in squirrel monkeys with PET and 2-18F-fluoro-A-85380.

作者信息

Le Foll Bernard, Chefer Svetlana I, Kimes Alane S, Shumway Dean, Goldberg Steven R, Stein Elliot A, Mukhin Alexey G

机构信息

Neuroimaging Research Branch, Intramural Research Program, National Institute on Drug Abuse, Baltimore, MD, USA.

出版信息

J Nucl Med. 2007 Sep;48(9):1492-500. doi: 10.2967/jnumed.107.039776. Epub 2007 Aug 17.

Abstract

UNLABELLED

The aim of the present study was to explore the applicability of an extracerebral reference region for the quantification of cerebral receptors with PET.

METHODS

Male squirrel monkeys underwent quantitative PET studies of cerebral nicotinic acetylcholine receptors (nAChRs) with 2-(18)F-fluoro-A-85380 (2-FA). Data from dynamic PET scans were analyzed with various compartment- and non-compartment-based models, including a simplified reference tissue model (SRTM). Nondisplaceable volume-of-distribution (VDnd) values were determined in regions of interest after the blockade of 2-FA-specific binding by nicotine infusion. Binding potential values, estimated with the cerebellum and muscle as reference regions, were compared and the reproducibility of measurements was determined.

RESULTS

One- and 2-tissue-compartment modeling and linear graphic analysis provided similar total volume-of-distribution (VD(T)) values for each studied region. VD(T) values were high in the thalamus, intermediate in the cortex and midbrain, and low in the cerebellum and muscle, consistent with the distribution pattern of nAChR containing alpha(4) and beta(2) receptor subunits (alpha(4)beta(2)). The administration of nicotine at 2 mg/kg/d via an osmotic pump resulted in a nearly complete saturation of 2-FA-specific binding and led to very small changes in volumes of distribution in the cerebellum and muscle (-9% +/- 4% [mean +/- SEM] and 0% +/- 6%, respectively), suggesting limited specific binding of the radioligand in these areas. VD(T) measured in muscle in 15 monkeys was reasonably constant (3.0 +/- 0.2, with a coefficient of variation of 8%). VDnd in studied brain regions exceeded VD(T) in muscles by a factor of 1.3. With this factor and with muscle as a reference region, BP values calculated for studied brain regions with the SRTM were in good agreement with those obtained with the cerebellum as a reference region. Significant correlations were observed between BP* values estimated with these 2 approaches. The reproducibilities of BP* measurements obtained with the 2 methods were comparable, with coefficients of variation of less than 11% and 13% for the thalamus and the cortex, respectively.

CONCLUSION

These results suggest that the accurate quantification of nAChRs can be performed with 2-FA and a reference region outside the brain, providing a novel approach for the quantification of brain receptors when no suitable cerebral reference region is available.

摘要

未标注

本研究的目的是探讨脑外参考区域在正电子发射断层扫描(PET)定量脑受体中的适用性。

方法

雄性松鼠猴接受了用2-(18)F-氟-A-85380(2-FA)对脑烟碱型乙酰胆碱受体(nAChRs)进行的定量PET研究。动态PET扫描数据用各种基于房室和非房室的模型进行分析,包括简化参考组织模型(SRTM)。在通过尼古丁输注阻断2-FA特异性结合后,在感兴趣区域测定非置换分布容积(VDnd)值。比较了以小脑和肌肉作为参考区域估计的结合势值,并确定了测量的可重复性。

结果

单房室和双房室建模以及线性图形分析为每个研究区域提供了相似的总分布容积(VD(T))值。丘脑的VD(T)值高,皮质和中脑的VD(T)值中等,小脑和肌肉的VD(T)值低,这与含有α(4)和β(2)受体亚基(α(4)β(2))的nAChR的分布模式一致。通过渗透泵以2mg/kg/d的剂量给予尼古丁导致2-FA特异性结合几乎完全饱和,并导致小脑和肌肉中分布容积的变化非常小(分别为-9%±4%[平均值±标准误]和0%±6%),表明放射性配体在这些区域的特异性结合有限。在15只猴子的肌肉中测量的VD(T)相当恒定(3.0±0.2,变异系数为8%)。研究脑区的VDnd比肌肉中的VD(T)高1.3倍。利用这个系数并以肌肉作为参考区域,用SRTM为研究脑区计算的BP值与以小脑作为参考区域获得的值高度一致。用这两种方法估计的BP值之间观察到显著相关性。用这两种方法获得的BP测量的可重复性相当,丘脑和皮质的变异系数分别小于11%和13%。

结论

这些结果表明,使用2-FA和脑外参考区域可以对nAChRs进行准确的定量,当没有合适的脑内参考区域时,为脑受体的定量提供了一种新方法。

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