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BIMT 17,一种在大鼠大脑皮层中作为5-HT2A受体拮抗剂和5-HT1A受体完全激动剂的物质。

BIMT 17, a 5-HT2A receptor antagonist and 5-HT1A receptor full agonist in rat cerebral cortex.

作者信息

Borsini F, Giraldo E, Monferini E, Antonini G, Parenti M, Bietti G, Donetti A

机构信息

Research Division, Boehringer Ingelheim Italia, Milano, Italy.

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 1995 Sep;352(3):276-82. doi: 10.1007/BF00168557.

Abstract

In the search for antidepressant agents with a rapid onset of action, we have found that compound BIMT 17 (1-[2-[4-(3-trifluoromethylphenyl)piperazin-1- yl]ethyl]benzimidazol-[1H]-2-one) shows a good affinity for cerebral cortical 5-HT1A (pKi = 7.72) and 5-HT2A (pKi = 6.90) receptors, with no appreciable affinity for the other 5-HT receptor subtypes, including 5-HT2C. BIMT 17 reduced forskolin-stimulated cAMP accumulation in the cerebral cortex (pEC50 = 6.09) and in the hippocampus (pEC50 = 6.50), and antagonized 5-HT-induced phosphatidylinositol turnover (pKi = 6.96) in the cerebral cortex. The effect on cAMP accumulation was blocked by the 5-HT1A receptor antagonist tertatolol. Buspirone, 8-OH-DPAT and S 14671 (1-[2-(2-thenoylamino)ethyl]- 4[1-(7-methoxynaphtyl)]-piperazine), claimed to be 5-HT1A receptor agonists, did not reduce forskolin-stimulated cAMP formation in the cerebral cortex. On the basis of these data, it was concluded that BIMT 17 was the only compound that behaved as a full agonist with respect to the cAMP response in the cortex, while exerting concurrent agonism at 5-HT1A receptors and antagonism at 5-HT2A receptors. These characteristics might explain the peculiar behavior of BIMT 17 in mimicking the inhibitory action of 5-HT on the basal firing rate of the cortical neurons (see accompanying paper).

摘要

在寻找起效迅速的抗抑郁药的过程中,我们发现化合物BIMT 17(1-[2-[4-(3-三氟甲基苯基)哌嗪-1-基]乙基]苯并咪唑-[1H]-2-酮)对大脑皮质5-HT1A(pKi = 7.72)和5-HT2A(pKi = 6.90)受体具有良好的亲和力,而对包括5-HT2C在内的其他5-HT受体亚型没有明显亲和力。BIMT 17可降低大脑皮质(pEC50 = 6.09)和海马体(pEC50 = 6.50)中福斯高林刺激的cAMP积累,并拮抗大脑皮质中5-HT诱导的磷脂酰肌醇周转(pKi = 6.96)。5-HT1A受体拮抗剂特他洛尔可阻断对cAMP积累的影响。声称是5-HT1A受体激动剂的丁螺环酮、8-OH-DPAT和S 14671(1-[2-(2-噻吩甲酰胺基)乙基]-4[1-(7-甲氧基萘基)]-哌嗪)不会降低大脑皮质中福斯高林刺激的cAMP形成。基于这些数据,得出的结论是,BIMT 17是唯一一种在皮质中对cAMP反应表现为完全激动剂,同时在5-HT1A受体上发挥激动作用且在5-HT2A受体上发挥拮抗作用的化合物。这些特性可能解释了BIMT 17在模拟5-HT对皮质神经元基础放电率的抑制作用方面的特殊行为(见随附论文)。

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