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N-(3-碘代丙-2E-烯基)-2β-甲氧羰基-3β-(3',4'-二氯苯基)降托烷(β-CDIT),一种托烷衍生物:作为啮齿动物脑中多巴胺转运体特异性配体的药理学特性

N-(3-lodoprop-2E-enyl)-2beta-carbomethoxy-3beta-(3',4'-dichloro phenyl)nortropane (beta-CDIT), a tropane derivative: pharmacological characterization as a specific ligand for the dopamine transporter in the rodent brain.

作者信息

Garreau L, Emond P, Belzung C, Guilloteau D, Frangin Y, Besnard J C, Chalon S

机构信息

INSERM U316, Laboratoire de Biophysique Médicale et Pharmaceutique, Tours, France.

出版信息

J Pharmacol Exp Ther. 1997 Jul;282(1):467-74.

PMID:9223589
Abstract

N-(3-Iodoprop-2E-enyl)-2beta-carbomethoxy-3beta-(3',4'-dichl orophenyl)nortropane (beta-CDIT), a new iodinated tropane derivative, has been synthesized and radiolabeled with iodine. [125I]beta-CDIT was tested in vitro and ex vivo as a probe for the dopamine transporter site in the rat brain, and behavioral studies were performed in mice. Saturation studies in the striatum revealed that [125I]beta-CDIT bound to a single high-affinity site. The Kd value was 0.18 +/- 0.07 nM, and the corresponding Bmax value was 500 +/- 80 fmol/mg of protein. The pharmacological profile of specific [125I]beta-CDIT binding in the striatum was consistent with that of the dopamine transporter. In addition, competition studies in cerebral cortex regions with [3H]paroxetine and [3H]nisoxetine showed a very low affinity of beta-CDIT for the 5-hydroxytryptamine (Ki = 50 nM) and norepinephrine (Ki = 500 nM) transporters compared with beta-CIT (corresponding Ki values were 3 and 80 nM). In contrast, the competition of beta-CDIT with [3H]GBR 12935 in the striatal region (Ki = 29 nM) was of the same order of value as for beta-CIT (Ki = 27.5 nM). Behavioral experiments in mice showed that both beta-CDIT and beta-CIT induced stimulation of locomotor activity. Ex vivo autoradiographic studies in rats using [125I]beta-CDIT demonstrated high densities of [125I]beta-CDIT binding sites in areas known to be rich in dopaminergic innervation. Because of its high affinity and high selectivity for the dopamine transporter, [125I]beta-CDIT should be a valuable ligand for the exploration of the dopamine transporter with single-photon emission computed tomography.

摘要

N-(3-碘代丙-2E-烯基)-2β-甲氧羰基-3β-(3',4'-二氯苯基)去甲托烷(β-CDIT),一种新型碘化托烷衍生物,已被合成并进行了碘标记。[125I]β-CDIT作为大鼠脑内多巴胺转运体位点的探针进行了体外和体内实验,并在小鼠身上进行了行为学研究。纹状体的饱和研究表明,[125I]β-CDIT与单一高亲和力位点结合。解离常数(Kd)值为0.18±0.07 nM,相应的最大结合容量(Bmax)值为500±80 fmol/mg蛋白质。纹状体内特异性[125I]β-CDIT结合的药理学特征与多巴胺转运体一致。此外,在大脑皮质区域用[3H]帕罗西汀和[3H]尼索西汀进行的竞争研究表明,与β-CIT(相应的Ki值分别为3和80 nM)相比,β-CDIT对5-羟色胺(Ki = 50 nM)和去甲肾上腺素(Ki = 500 nM)转运体的亲和力非常低。相反,β-CDIT在纹状体区域与[3H]GBR 12935的竞争(Ki = 29 nM)与β-CIT(Ki = 27.5 nM)处于同一数量级。小鼠的行为实验表明,β-CDIT和β-CIT均能诱导运动活性增强。用[125I]β-CDIT对大鼠进行的体内放射自显影研究表明,在已知富含多巴胺能神经支配的区域,[125I]β-CDIT结合位点密度很高。由于其对多巴胺转运体具有高亲和力和高选择性,[125I]β-CDIT应该是用于单光子发射计算机断层扫描探索多巴胺转运体的一种有价值的配体。

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