Tassin Jean-Pol, Torrens Yvette, Salomon Lucas, Lanteri Christophe, Seeman Philip
Institut National de la Santé et de la Recherche Médicale Unité 114 et Centre National de la Recherche Scientifique UMR7148, Collège de France, 11 Place Marcelin Berthelot, 75231 Paris Cedex 05, France.
Synapse. 2007 Jul;61(7):569-72. doi: 10.1002/syn.20401.
Although amphetamine induces hyperactivity by releasing dopamine (DA), mice that lack alpha1b-adrenoceptors do not release DA in response to amphetamine and do not, therefore, exhibit locomotor supersensitivity to amphetamine. However, such mice reveal hyperlocomotion to p-chloroamphetamine (PCA). Because these alpha1b-adrenoceptor knockout mice have no alterations in the striatal densities of DA D1 or D2 receptors, the basis for any possible dopaminergic contribution to the PCA-induced hyperlocomotion to PCA is unclear. Therefore, because supersensitive animals are generally known to have a higher proportion of DA D2 receptors in the high-affinity state for DA D2(High), we investigated whether there was any change in the alpha1b-adrenoceptor knockout striata in the proportion of DA D2(High) receptors to determine whether there could be a DA-based contribution to the PCA-induced hyperlocomotion. We found that the proportion of D2(High) in the wild type striata was 23 +/- 3.3%, whereas that in the alpha1b-adrenoceptor knockout striata was 52 +/- 2.9%, an increase of 2.3-fold. This elevation agrees with other types of DA-supersensitive animal striata and could assist in eliciting a supersensitive response in these alpha1b-adrenoceptor knockout mice.
虽然苯丙胺通过释放多巴胺(DA)诱导多动,但缺乏α1b -肾上腺素能受体的小鼠不会因苯丙胺而释放DA,因此也不会对苯丙胺表现出运动超敏反应。然而,这类小鼠对p -氯苯丙胺(PCA)表现出运动亢进。由于这些α1b -肾上腺素能受体基因敲除小鼠的纹状体中DA D1或D2受体密度没有改变,因此尚不清楚多巴胺能对PCA诱导的运动亢进可能有何种贡献的基础。因此,鉴于一般已知超敏动物在DA D2的高亲和力状态(DA D2(High))下具有更高比例的DA D2受体,我们研究了α1b -肾上腺素能受体基因敲除小鼠纹状体中DA D2(High)受体的比例是否有任何变化,以确定是否可能存在基于多巴胺的对PCA诱导的运动亢进的贡献。我们发现野生型纹状体中D2(High)的比例为23±3.3%,而α1b -肾上腺素能受体基因敲除小鼠纹状体中的比例为52±2.9%,增加了2.3倍。这种升高与其他类型的DA超敏动物纹状体一致,并且可能有助于在这些α1b -肾上腺素能受体基因敲除小鼠中引发超敏反应。