von Euler G, Fuxe K, Benfenati F, Hansson T, Agnati L F, Gustafsson J A
Department of Histology, Karolinska Institute, Stockholm, Sweden.
Acta Physiol Scand. 1989 Apr;135(4):443-8. doi: 10.1111/j.1748-1716.1989.tb08602.x.
The effects of neurotensin in vitro (1-100 nM) on the binding characteristics of [3H]N-propylnorapomorphine ([3H]NPA) were analysed in striatal membrane preparations of the adult male rat. Subsequently, it was investigated whether the modulatory effects of 10 nM neurotensin on [3H]NPA binding were altered by treatment with toluene in vivo (80 p.p.m., 3 days, 6 h day-1) and in vitro (19 mumol ml-1). Displacement of [3H]NPA binding by raclopride (IC50 about 15 nM) and SCH 23390 (without effect) indicated that [3H]NPA labelled only D2 dopamine receptors in the present study. Neurotensin was found to reduce the affinity of D2 receptors with a maximum response at 10 nM. At this concentration the KD value was increased by 30-40% without any consistent changes in the number of binding sites. The modulatory effect of neurotensin remained intact also following toluene treatment in vivo and in vitro, although at a higher KD range, since toluene alone increased the KD value of [3H]NPA binding by 40-50%. Thus, the mechanisms mediating the effects of neurotensin and toluene on the D2 receptor are likely to be different. When neurotensin and toluene treatments were combined, the KD values of [3H]NPA binding were about twice as high as in non-treated controls. These additive effects may lead to a severely decreased efficiency of dopamine D2-mediated neurotransmission in vivo.
在成年雄性大鼠的纹状体膜制备物中,分析了体外(1 - 100 nM)神经降压素对[³H]N - 丙基去甲阿朴吗啡([³H]NPA)结合特性的影响。随后,研究了体内(80 ppm,3天,每天6小时)和体外(19 μmol/ml)用甲苯处理是否会改变10 nM神经降压素对[³H]NPA结合的调节作用。雷氯必利(IC50约15 nM)和SCH 23390(无作用)对[³H]NPA结合的置换表明,在本研究中[³H]NPA仅标记D2多巴胺受体。发现神经降压素会降低D2受体的亲和力,在10 nM时达到最大反应。在此浓度下,KD值增加了30 - 40%,而结合位点数量没有任何一致的变化。尽管在更高的KD范围内,但体内和体外甲苯处理后神经降压素的调节作用仍然完好,因为单独的甲苯会使[³H]NPA结合的KD值增加40 - 50%。因此,介导神经降压素和甲苯对D2受体作用的机制可能不同。当神经降压素和甲苯处理联合使用时,[³H]NPA结合的KD值约为未处理对照组的两倍。这些相加作用可能导致体内多巴胺D2介导的神经传递效率严重降低。