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通过单次正电子发射断层扫描(PET)注射多次[(11)C]raclopride 测量密度和对多巴胺 D(2)受体的亲和力。

Measurement of density and affinity for dopamine D(2) receptors by a single positron emission tomography scan with multiple injections of [(11)C]raclopride.

机构信息

Department of Investigative Radiology, National Cardiovascular Center Research Institute, Osaka 565-8565, Japan.

出版信息

J Cereb Blood Flow Metab. 2010 Mar;30(3):663-73. doi: 10.1038/jcbfm.2009.239. Epub 2009 Nov 11.

Abstract

Positron emission tomography (PET) with [(11)C]raclopride has been used to investigate the density (B(max)) and affinity (K(d)) of dopamine D(2) receptors related to several neurological and psychiatric disorders. However, in assessing the B(max) and K(d), multiple PET scans are necessary under variable specific activities of administered [(11)C]raclopride, resulting in a long study period and unexpected physiological variations. In this paper, we have developed a method of multiple-injection graphical analysis (MI-GA) that provides the B(max) and K(d) values from a single PET scan with three sequential injections of [(11)C]raclopride, and we validated the proposed method by performing numerous simulations and PET studies on monkeys. In the simulations, the three-injection protocol was designed according to prior knowledge of the receptor kinetics, and the errors of B(max) and K(d) estimated by MI-GA were analyzed. Simulations showed that our method could support the calculation of B(max) and K(d), despite a slight overestimation compared with the true magnitudes. In monkey studies, we could calculate the B(max) and K(d) of diseased or normal striatum in a 150 mins scan with the three-injection protocol of [(11)C]raclopride. Estimated B(max) and K(d) values of D(2) receptors in normal or partially dopamine-depleted striatum were comparable to the previously reported values.

摘要

正电子发射断层扫描(PET)与[(11)C]raclopride 已被用于研究与多种神经和精神疾病相关的多巴胺 D2 受体的密度(B(max))和亲和力(K(d))。然而,在评估 B(max)和 K(d)时,需要在给予[(11)C]raclopride 的不同比活度下进行多次 PET 扫描,导致研究周期长且可能出现意外的生理变化。在本文中,我们开发了一种多次注射图形分析(MI-GA)方法,该方法可通过单次 PET 扫描提供三次连续注射[(11)C]raclopride 的 B(max)和 K(d)值,并通过在猴子上进行大量模拟和 PET 研究验证了所提出的方法。在模拟中,根据受体动力学的先验知识设计了三注射方案,并分析了 MI-GA 估算的 B(max)和 K(d)的误差。模拟表明,尽管与真实值相比存在轻微高估,但我们的方法仍可以支持 B(max)和 K(d)的计算。在猴子研究中,我们可以使用[(11)C]raclopride 的三注射方案在 150 分钟扫描中计算患病或正常纹状体的 B(max)和 K(d)。正常或部分多巴胺耗竭纹状体中 D2 受体的估计 B(max)和 K(d)值与之前报道的值相当。

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