Aubry J M, Schulz M F, Pagliusi S, Schulz P, Kiss J Z
Department of Psychiatry, IUPG, Geneva, Switzerland.
Neuroscience. 1993 Mar;53(2):417-24. doi: 10.1016/0306-4522(93)90205-t.
Amongst different intrinsic and extrinsic inputs, cholinergic striatal interneurons receive afferents from the dopaminergic nigrostriatal projection and from local collaterals of striatonigral cells containing substance P. The following study demonstrates that both dopamine D2 and substance P (neurokinin-1) receptors are expressed by a large proportion of cholinergic interneurons. Using in situ hybridization on triplet adjacent sections with radioactive probes specific for choline acetyltransferase, substance P receptor, and D2 receptor long-splicing form messenger RNAs, we show that these interneurons can be divided into four subpopulations in terms of substance P and D2 receptor expression. A majority of these neurons coexpress both receptors (76%), while other minor subpopulations express either one (respectively, 16% and 2%) or none of them (6%). Our results also show that substance P receptor is expressed by striatal neurons that are not cholinergic. These findings are in agreement with the concept that striatal cholinergic interneurons are heterogeneous in terms of input-output connections and the type of receptors expressed. Moreover, the presence of substance P and D2 receptors on a majority of these neurons is relevant to a putative role of cholinergic interneurons in several conditions such as various neurodegenerative disorders or antipsychotic drug administration, where substance P and dopamine inputs are modified.
在不同的内在和外在输入中,胆碱能纹状体中间神经元接收来自多巴胺能黑质纹状体投射以及来自含有P物质的纹状体黑质细胞的局部侧支的传入纤维。以下研究表明,多巴胺D2受体和P物质(神经激肽-1)受体在大部分胆碱能中间神经元中均有表达。通过对相邻三联体切片进行原位杂交,使用针对胆碱乙酰转移酶、P物质受体和D2受体长剪接形式信使核糖核酸的放射性探针,我们发现,就P物质和D2受体表达而言,这些中间神经元可分为四个亚群。这些神经元中的大多数同时表达这两种受体(76%),而其他较小的亚群则分别只表达其中一种(分别为16%和2%)或两种都不表达(6%)。我们的研究结果还表明,非胆碱能的纹状体神经元也表达P物质受体。这些发现与以下概念一致,即纹状体胆碱能中间神经元在输入-输出连接和所表达的受体类型方面是异质性的。此外,这些神经元中的大多数同时存在P物质和D2受体,这与胆碱能中间神经元在多种情况下(如各种神经退行性疾病或抗精神病药物给药,其中P物质和多巴胺输入会发生改变)的假定作用相关。