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Muscarinic M2-selective ligands also recognize M4 receptors in the rat brain: Evidence from combined in situ hybridization and receptor autoradiography

机译:毒蕈碱型M2选择性配体还可以识别大鼠大脑中的M4受体:结合原位杂交和受体放射自显影的证据

摘要

We have used autoradiographic techniques to examine the characteristics and distribution of the binding of reported selective M2 muscarinic ligands and compared them with the distribution of cells expressing mRNAs for the different subtypes of muscarinic receptors. Our results suggest that the M2 ligands used in the present study ([3H]OXO-M, [3H]AF-DX 384, AF-DX 116, methoctramine) also recognize M4 receptors present in regions such as the striatum and olfactory tubercle. This is supported by 1) relative abundances of the different transcripts, with m2 mRNA being very scarce and m4 mRNA very abundant in these regions; 2) comparison of the pharmacological characteristics of M2-ligand binding sites in brain areas selected by their exclusive expression of M2 receptors versus areas enriched in M4 receptors. An important conclusion of these studies is that none of the muscarinic radioligands available at the present time appears to label specifically a single muscarinic receptor subtype population. Areas are suggested where autoradiographic techniques can be helpful in elucidating the subtype selectivity of existing and new ligands.
机译:我们已经使用放射自显影技术来检查已报道的选择性M2毒蕈碱配体的结合特征和分布,并将它们与表达毒蕈碱受体不同亚型的mRNA的细胞分布进行比较。我们的结果表明,本研究中使用的M2配体([3H] OXO-M,[3H] AF-DX 384,AF-DX 116,甲辛胺)也可以识别纹状体和嗅结节等区域中存在的M4受体。 1)不同转录本的相对丰度支持了这一点,在这些区域中m2 mRNA非常稀缺,m4 mRNA非常丰富; 2)比较M2-配体结合位点在脑区域中的药理学特征,所述脑区域是由它们的M2受体的独家表达与富集M4受体的区域所选择的。这些研究的重要结论是,目前没有可用的毒蕈碱放射性配体似乎没有专门标记单个毒蕈碱受体亚型群体。建议使用放射自显影技术有助于阐明现有和新配体的亚型选择性的领域。

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