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多巴胺去神经支配不会改变大鼠纹状体中体内3H-螺哌隆结合:对帕金森病中多巴胺受体的体外成像的启示。

Dopamine denervation does not alter in vivo 3H-spiperone binding in rat striatum: implications for external imaging of dopamine receptors in Parkinson's disease.

作者信息

Bennett J P, Wooten G F

出版信息

Ann Neurol. 1986 Apr;19(4):378-83. doi: 10.1002/ana.410190412.

Abstract

Striatal particulate preparations, both from rats with lesion-induced striatal dopamine (DA) loss and from some striatal dopamine (DA) loss and from some patients with Parkinson's disease, exhibit increased 3H-neuroleptic binding, which is interpreted to be the mechanism of denervation-induced behavioral supersensitivity to dopaminergic compounds. After intravenous 3H-spiperone (3H-SP) administration to rats with unilateral nigral lesions, we found no differences in accumulation of total or particulate-bound 3H-SP in dopamine-denervated compared with intact striata. 3H-SP in vivo binds to less than 10% of striatal sites labeled by 3H-SP incubated with striatal particulate preparations in vitro. Quantitative autoradiography of 3H-SP binding to striatal sections in vitro also failed to reveal any effects of dopamine denervation. 3H-SP bound to striatal sites in vivo dissociates more slowly than that bound to striatal particulate preparations labeled in vitro. Striatal binding properties of 3H-SP administered in vivo are quite different from the same kinetic binding parameters estimated in vitro using crude membrane preparations of striatum. In addition, striatal binding of in vivo-administered 3H-SP is not affected by prior lesion of the substantia nigra, which results in profound ipsilateral striatal dopamine depletion. Thus, behavioral supersensitivity to dopaminergic compounds may not be associated with altered striatal binding properties for dopamine receptor ligands in vivo.

摘要

来自因损伤导致纹状体多巴胺(DA)缺失的大鼠以及一些帕金森病患者的纹状体微粒制剂,显示出3H-抗精神病药物结合增加,这被解释为去神经支配诱导对多巴胺能化合物行为超敏反应的机制。在对单侧黑质损伤的大鼠静脉注射3H-螺哌隆(3H-SP)后,我们发现与完整纹状体相比,多巴胺去神经支配的纹状体中总3H-SP或微粒结合的3H-SP积累没有差异。体内的3H-SP与体外与纹状体微粒制剂孵育的3H-SP标记的纹状体位点的结合不到10%。体外对纹状体切片进行3H-SP结合的定量放射自显影也未能揭示多巴胺去神经支配的任何影响。体内与纹状体位点结合的3H-SP比体外标记的纹状体微粒制剂结合的3H-SP解离得更慢。体内给予的3H-SP的纹状体结合特性与使用纹状体粗膜制剂体外估计的相同动力学结合参数有很大不同。此外,体内给予的3H-SP的纹状体结合不受黑质先前损伤的影响,黑质损伤会导致同侧纹状体多巴胺大量耗竭。因此,对多巴胺能化合物的行为超敏反应可能与体内多巴胺受体配体的纹状体结合特性改变无关。

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