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11C-JHU75528:一种用于CB1大麻素受体PET成像的放射性示踪剂。

11C-JHU75528: a radiotracer for PET imaging of CB1 cannabinoid receptors.

作者信息

Horti Andrew G, Fan Hong, Kuwabara Hiroto, Hilton John, Ravert Hayden T, Holt Daniel P, Alexander Mohab, Kumar Anil, Rahmim Arman, Scheffel Ursula, Wong Dean F, Dannals Robert F

机构信息

Department of Radiology, Johns Hopkins Medical Institutions, Baltimore, Maryland 21287-0816, USA.

出版信息

J Nucl Med. 2006 Oct;47(10):1689-96.

Abstract

UNLABELLED

The development of the radioligands for PET imaging of the cerebral cannabinoid receptor (CB1) is of great importance for studying its role in neuropsychiatric disorders, obesity, and drug dependence. None of the currently available radioligands for CB1 are suitable for quantitative PET, primarily because of their insufficient binding potential (BP) in brain or low penetration through the blood-brain barrier (BBB). The goal of this study was to evaluate 11C-JHU75528, an analog of the selective CB1 antagonist rimonabant, in vivo as a potential CB1 radioligand for PET.

METHODS

The brain regional distribution and pharmacology of 11C-JHU75528 have been evaluated in vivo in mice (dissection) and baboons (PET).

RESULTS

11C-JHU75528 readily entered the mouse and baboon brain and specifically and selectively labeled cerebral CB1 receptors. The ratio of striatum to brain stem in mice and the binding potential (BP) in the baboon putamen were 3.4 and 1.3-1.5, respectively. The specific binding of 11C-JHU75528 in vivo was blocked by preinjection of nonlabeled JHU75528. Administration of rimonabant (1 mg/kg, intravenously) also blocked the specific binding of 11C-JHU75528 in the mouse and baboon brain, whereas various central noncannabinoid drugs did not significantly reduce the 11C-JHU75528 binding in the mouse brain. 11C-JHU75528 formed several hydrophilic metabolites, but only a minute fraction of metabolic radioactivity penetrated the BBB.

CONCLUSION

11C-JHU75528 holds promise as a radiotracer with suitable imaging properties for quantification of CB1 receptors in the human brain.

摘要

未标注

用于脑大麻素受体(CB1)正电子发射断层显像(PET)的放射性配体的研发对于研究其在神经精神疾病、肥胖症和药物依赖中的作用至关重要。目前可用的CB1放射性配体均不适用于定量PET,主要原因是它们在脑中的结合潜能(BP)不足或穿过血脑屏障(BBB)的穿透性较低。本研究的目的是在体内评估11C-JHU75528,一种选择性CB1拮抗剂利莫那班的类似物,作为PET潜在的CB1放射性配体。

方法

已在小鼠(解剖)和狒狒(PET)体内评估了11C-JHU75528的脑区分布和药理学特性。

结果

11C-JHU75528很容易进入小鼠和狒狒的脑内,并特异性且选择性地标记脑CB1受体。小鼠纹状体与脑干的比值以及狒狒壳核中的结合潜能(BP)分别为3.4和1.3 - 1.5。在体内,预先注射未标记的JHU75528可阻断11C-JHU75528的特异性结合。静脉注射利莫那班(1 mg/kg)也可阻断11C-JHU75528在小鼠和狒狒脑中的特异性结合,而各种中枢非大麻素类药物并未显著降低11C-JHU75528在小鼠脑中的结合。11C-JHU75528形成了几种亲水性代谢物,但只有极少量的代谢放射性穿透血脑屏障。

结论

11C-JHU75528有望成为一种具有合适成像特性的放射性示踪剂,用于定量人脑中的CB1受体。

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