Palacios J M, Young W S, Kuhar M J
Eur J Pharmacol. 1979 Oct 1;58(3):295-304. doi: 10.1016/0014-2999(79)90478-3.
3H-Mepyramine (3H-MEP) binds to slide-mounted tissue sections with characteristics indicating the labelling of a H1-histamine receptor. It is saturable (Bmax 12 pg/g tissue), of a high affinity (KD 0.5 mM) and possesses a drug specificity similar to that observed for H1 receptors in a variety of systems. In agreement with other biochemical studies, the association constant and the number of binding sites appear lower in the rat than in the guinea pig. Once the optimal conditions for labelling the receptors were found in the biochemical studies, tissue sections were prepared for autoradiographic studies. The receptor density varied markedly in the different brain regions. For example, there was a high density of H1 receptors in the molecular layer of the guinea pig cerebellum. In the guinea pig hippocampal formation, the highest densities were found in the molecular layer of the dentate gyrus while lower levels were found in the dendritic fields of the pyramidal cells. Significant densities of receptors were found in other areas of the rat and guinea pig brain as well.
3-氢-美吡拉敏(3H-MEP)与载玻片上的组织切片结合,其特征表明标记的是H1组胺受体。它具有饱和性(最大结合量为12 pg/g组织)、高亲和力(解离常数KD为0.5 mM),并且具有与多种系统中H1受体观察到的相似的药物特异性。与其他生化研究一致,大鼠体内的结合常数和结合位点数量似乎低于豚鼠。一旦在生化研究中找到了标记受体的最佳条件,就制备组织切片用于放射自显影研究。不同脑区的受体密度差异显著。例如,豚鼠小脑分子层中H1受体密度很高。在豚鼠海马结构中,齿状回分子层的受体密度最高,而锥体细胞树突场的受体密度较低。在大鼠和豚鼠大脑的其他区域也发现了显著的受体密度。