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大鼠脑中的多个3H-5-羟色胺结合位点。

Multiple 3H-5-hydroxytryptamine binding sites in rat brain.

作者信息

Nelson D L, Pedigo N W, Yamamura H I

出版信息

J Physiol (Paris). 1981;77(2-3):369-72.

PMID:7288652
Abstract
  1. The effects of spiperone on 3H-5-HT binding to membranes prepared from rat diencephalon and lower brain stem were studied for comparison with telencephalic structures. 2. The neuroleptic spiperone produced shallow, complex inhibition curves of 3H-5-HT binding in the non-telencephalic areas, suggesting the presence of different types of high-affinity 3H-5-HT binding sites. However, the shape of the curves from the non-telencephalic areas differed from those of telencephalic regions. For example, there was a tendency for low concentrations of spiperone to cause an increase in binding in the diencephalon and lower brain stem rather than a decrease as seen in telencephalic areas. 3. In a search for other compounds which, like spiperone, could discriminate between the different types of 3H-5-HT binding sites in rat telencephalon, it was found that most drugs show little difference in their affinities for the two sites. However, one compound, AHR 1709B, was found to be about 10 times more potent in rat frontal cortex than corpus striatum, indicating that it can differentially recognize the two binding sites. 4. These results are consistent with the existence of multiple types of 3H-5-HT binding sites in the rat brain, and they define regional differences that had not previously been described. In addition, a new compound which can discriminate between different types of 3H-5-HT binding sites has been found, leading the way to the study of a series of new drugs which may selectively alter serotoninergic function.
摘要
  1. 研究了螺哌隆对大鼠间脑和低位脑干制备的膜上3H-5-羟色胺(3H-5-HT)结合的影响,以便与端脑结构进行比较。2. 抗精神病药物螺哌隆在非端脑区域产生了浅而复杂的3H-5-HT结合抑制曲线,提示存在不同类型的高亲和力3H-5-HT结合位点。然而,非端脑区域的曲线形状与端脑区域的不同。例如,低浓度的螺哌隆在间脑和低位脑干中倾向于导致结合增加,而不是像在端脑区域那样导致结合减少。3. 在寻找其他像螺哌隆一样能够区分大鼠端脑中不同类型3H-5-HT结合位点的化合物时,发现大多数药物对这两个位点的亲和力差异不大。然而,发现一种化合物AHR 1709B在大鼠额叶皮质中的效力比纹状体高约10倍,表明它能够区分这两个结合位点。4. 这些结果与大鼠脑中存在多种类型的3H-5-HT结合位点一致,并且它们定义了以前未描述过的区域差异。此外,还发现了一种能够区分不同类型3H-5-HT结合位点的新化合物,为一系列可能选择性改变5-羟色胺能功能的新药研究开辟了道路。

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